1ae813fd8SSepherosa Ziehau /* $OpenBSD: if_nfe.c,v 1.63 2006/06/17 18:00:43 brad Exp $ */ 2*1d67eefeSSepherosa Ziehau /* $DragonFly: src/sys/dev/netif/nfe/if_nfe.c,v 1.23 2008/06/25 15:50:27 sephe Exp $ */ 3ae813fd8SSepherosa Ziehau 4ae813fd8SSepherosa Ziehau /* 5ae813fd8SSepherosa Ziehau * Copyright (c) 2006 The DragonFly Project. All rights reserved. 6ae813fd8SSepherosa Ziehau * 7ae813fd8SSepherosa Ziehau * This code is derived from software contributed to The DragonFly Project 8ae813fd8SSepherosa Ziehau * by Sepherosa Ziehau <sepherosa@gmail.com> and 9ae813fd8SSepherosa Ziehau * Matthew Dillon <dillon@apollo.backplane.com> 10ae813fd8SSepherosa Ziehau * 11ae813fd8SSepherosa Ziehau * Redistribution and use in source and binary forms, with or without 12ae813fd8SSepherosa Ziehau * modification, are permitted provided that the following conditions 13ae813fd8SSepherosa Ziehau * are met: 14ae813fd8SSepherosa Ziehau * 15ae813fd8SSepherosa Ziehau * 1. Redistributions of source code must retain the above copyright 16ae813fd8SSepherosa Ziehau * notice, this list of conditions and the following disclaimer. 17ae813fd8SSepherosa Ziehau * 2. Redistributions in binary form must reproduce the above copyright 18ae813fd8SSepherosa Ziehau * notice, this list of conditions and the following disclaimer in 19ae813fd8SSepherosa Ziehau * the documentation and/or other materials provided with the 20ae813fd8SSepherosa Ziehau * distribution. 21ae813fd8SSepherosa Ziehau * 3. Neither the name of The DragonFly Project nor the names of its 22ae813fd8SSepherosa Ziehau * contributors may be used to endorse or promote products derived 23ae813fd8SSepherosa Ziehau * from this software without specific, prior written permission. 24ae813fd8SSepherosa Ziehau * 25ae813fd8SSepherosa Ziehau * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 26ae813fd8SSepherosa Ziehau * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 27ae813fd8SSepherosa Ziehau * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS 28ae813fd8SSepherosa Ziehau * FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE 29ae813fd8SSepherosa Ziehau * COPYRIGHT HOLDERS OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, 30ae813fd8SSepherosa Ziehau * INCIDENTAL, SPECIAL, EXEMPLARY OR CONSEQUENTIAL DAMAGES (INCLUDING, 31ae813fd8SSepherosa Ziehau * BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; 32ae813fd8SSepherosa Ziehau * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED 33ae813fd8SSepherosa Ziehau * AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, 34ae813fd8SSepherosa Ziehau * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT 35ae813fd8SSepherosa Ziehau * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 36ae813fd8SSepherosa Ziehau * SUCH DAMAGE. 37ae813fd8SSepherosa Ziehau */ 38ae813fd8SSepherosa Ziehau 39ae813fd8SSepherosa Ziehau /* 40ae813fd8SSepherosa Ziehau * Copyright (c) 2006 Damien Bergamini <damien.bergamini@free.fr> 41ae813fd8SSepherosa Ziehau * Copyright (c) 2005, 2006 Jonathan Gray <jsg@openbsd.org> 42ae813fd8SSepherosa Ziehau * 43ae813fd8SSepherosa Ziehau * Permission to use, copy, modify, and distribute this software for any 44ae813fd8SSepherosa Ziehau * purpose with or without fee is hereby granted, provided that the above 45ae813fd8SSepherosa Ziehau * copyright notice and this permission notice appear in all copies. 46ae813fd8SSepherosa Ziehau * 47ae813fd8SSepherosa Ziehau * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES 48ae813fd8SSepherosa Ziehau * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF 49ae813fd8SSepherosa Ziehau * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR 50ae813fd8SSepherosa Ziehau * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES 51ae813fd8SSepherosa Ziehau * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN 52ae813fd8SSepherosa Ziehau * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF 53ae813fd8SSepherosa Ziehau * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. 54ae813fd8SSepherosa Ziehau */ 55ae813fd8SSepherosa Ziehau 56ae813fd8SSepherosa Ziehau /* Driver for NVIDIA nForce MCP Fast Ethernet and Gigabit Ethernet */ 57ae813fd8SSepherosa Ziehau 58ae813fd8SSepherosa Ziehau #include "opt_polling.h" 591bf7e051SSepherosa Ziehau #include "opt_ethernet.h" 60ae813fd8SSepherosa Ziehau 61ae813fd8SSepherosa Ziehau #include <sys/param.h> 62ae813fd8SSepherosa Ziehau #include <sys/endian.h> 63ae813fd8SSepherosa Ziehau #include <sys/kernel.h> 64ae813fd8SSepherosa Ziehau #include <sys/bus.h> 659db4b353SSepherosa Ziehau #include <sys/interrupt.h> 66ae813fd8SSepherosa Ziehau #include <sys/proc.h> 67ae813fd8SSepherosa Ziehau #include <sys/rman.h> 68ae813fd8SSepherosa Ziehau #include <sys/serialize.h> 69ae813fd8SSepherosa Ziehau #include <sys/socket.h> 70ae813fd8SSepherosa Ziehau #include <sys/sockio.h> 71ae813fd8SSepherosa Ziehau #include <sys/sysctl.h> 72ae813fd8SSepherosa Ziehau 73ae813fd8SSepherosa Ziehau #include <net/ethernet.h> 74ae813fd8SSepherosa Ziehau #include <net/if.h> 75ae813fd8SSepherosa Ziehau #include <net/bpf.h> 76ae813fd8SSepherosa Ziehau #include <net/if_arp.h> 77ae813fd8SSepherosa Ziehau #include <net/if_dl.h> 78ae813fd8SSepherosa Ziehau #include <net/if_media.h> 79ae813fd8SSepherosa Ziehau #include <net/ifq_var.h> 80ae813fd8SSepherosa Ziehau #include <net/if_types.h> 81ae813fd8SSepherosa Ziehau #include <net/if_var.h> 82ae813fd8SSepherosa Ziehau #include <net/vlan/if_vlan_var.h> 83b637f170SSepherosa Ziehau #include <net/vlan/if_vlan_ether.h> 84ae813fd8SSepherosa Ziehau 85ae813fd8SSepherosa Ziehau #include <bus/pci/pcireg.h> 86ae813fd8SSepherosa Ziehau #include <bus/pci/pcivar.h> 87ae813fd8SSepherosa Ziehau #include <bus/pci/pcidevs.h> 88ae813fd8SSepherosa Ziehau 89ae813fd8SSepherosa Ziehau #include <dev/netif/mii_layer/mii.h> 90ae813fd8SSepherosa Ziehau #include <dev/netif/mii_layer/miivar.h> 91ae813fd8SSepherosa Ziehau 92ae813fd8SSepherosa Ziehau #include "miibus_if.h" 93ae813fd8SSepherosa Ziehau 9411db6c57SSepherosa Ziehau #include <dev/netif/nfe/if_nfereg.h> 9511db6c57SSepherosa Ziehau #include <dev/netif/nfe/if_nfevar.h> 9611db6c57SSepherosa Ziehau 9711db6c57SSepherosa Ziehau #define NFE_CSUM 9811db6c57SSepherosa Ziehau #define NFE_CSUM_FEATURES (CSUM_IP | CSUM_TCP | CSUM_UDP) 99ae813fd8SSepherosa Ziehau 100ae813fd8SSepherosa Ziehau static int nfe_probe(device_t); 101ae813fd8SSepherosa Ziehau static int nfe_attach(device_t); 102ae813fd8SSepherosa Ziehau static int nfe_detach(device_t); 103ae813fd8SSepherosa Ziehau static void nfe_shutdown(device_t); 104ae813fd8SSepherosa Ziehau static int nfe_resume(device_t); 105ae813fd8SSepherosa Ziehau static int nfe_suspend(device_t); 106ae813fd8SSepherosa Ziehau 107ae813fd8SSepherosa Ziehau static int nfe_miibus_readreg(device_t, int, int); 108ae813fd8SSepherosa Ziehau static void nfe_miibus_writereg(device_t, int, int, int); 109ae813fd8SSepherosa Ziehau static void nfe_miibus_statchg(device_t); 110ae813fd8SSepherosa Ziehau 111ae813fd8SSepherosa Ziehau #ifdef DEVICE_POLLING 112ae813fd8SSepherosa Ziehau static void nfe_poll(struct ifnet *, enum poll_cmd, int); 113ae813fd8SSepherosa Ziehau #endif 114ae813fd8SSepherosa Ziehau static void nfe_intr(void *); 115ae813fd8SSepherosa Ziehau static int nfe_ioctl(struct ifnet *, u_long, caddr_t, struct ucred *); 116ae813fd8SSepherosa Ziehau static void nfe_rxeof(struct nfe_softc *); 117ae813fd8SSepherosa Ziehau static void nfe_txeof(struct nfe_softc *); 118ae813fd8SSepherosa Ziehau static int nfe_encap(struct nfe_softc *, struct nfe_tx_ring *, 119ae813fd8SSepherosa Ziehau struct mbuf *); 120ae813fd8SSepherosa Ziehau static void nfe_start(struct ifnet *); 121ae813fd8SSepherosa Ziehau static void nfe_watchdog(struct ifnet *); 122ae813fd8SSepherosa Ziehau static void nfe_init(void *); 123ae813fd8SSepherosa Ziehau static void nfe_stop(struct nfe_softc *); 124ae813fd8SSepherosa Ziehau static struct nfe_jbuf *nfe_jalloc(struct nfe_softc *); 125ae813fd8SSepherosa Ziehau static void nfe_jfree(void *); 126ae813fd8SSepherosa Ziehau static void nfe_jref(void *); 127ae813fd8SSepherosa Ziehau static int nfe_jpool_alloc(struct nfe_softc *, struct nfe_rx_ring *); 128ae813fd8SSepherosa Ziehau static void nfe_jpool_free(struct nfe_softc *, struct nfe_rx_ring *); 129ae813fd8SSepherosa Ziehau static int nfe_alloc_rx_ring(struct nfe_softc *, struct nfe_rx_ring *); 130ae813fd8SSepherosa Ziehau static void nfe_reset_rx_ring(struct nfe_softc *, struct nfe_rx_ring *); 131ae813fd8SSepherosa Ziehau static int nfe_init_rx_ring(struct nfe_softc *, struct nfe_rx_ring *); 132ae813fd8SSepherosa Ziehau static void nfe_free_rx_ring(struct nfe_softc *, struct nfe_rx_ring *); 133ae813fd8SSepherosa Ziehau static int nfe_alloc_tx_ring(struct nfe_softc *, struct nfe_tx_ring *); 134ae813fd8SSepherosa Ziehau static void nfe_reset_tx_ring(struct nfe_softc *, struct nfe_tx_ring *); 135ae813fd8SSepherosa Ziehau static int nfe_init_tx_ring(struct nfe_softc *, struct nfe_tx_ring *); 136ae813fd8SSepherosa Ziehau static void nfe_free_tx_ring(struct nfe_softc *, struct nfe_tx_ring *); 137ae813fd8SSepherosa Ziehau static int nfe_ifmedia_upd(struct ifnet *); 138ae813fd8SSepherosa Ziehau static void nfe_ifmedia_sts(struct ifnet *, struct ifmediareq *); 139ae813fd8SSepherosa Ziehau static void nfe_setmulti(struct nfe_softc *); 140ae813fd8SSepherosa Ziehau static void nfe_get_macaddr(struct nfe_softc *, uint8_t *); 141ae813fd8SSepherosa Ziehau static void nfe_set_macaddr(struct nfe_softc *, const uint8_t *); 142ae813fd8SSepherosa Ziehau static void nfe_tick(void *); 143ae813fd8SSepherosa Ziehau static void nfe_ring_dma_addr(void *, bus_dma_segment_t *, int, int); 144ae813fd8SSepherosa Ziehau static void nfe_buf_dma_addr(void *, bus_dma_segment_t *, int, bus_size_t, 145ae813fd8SSepherosa Ziehau int); 146ae813fd8SSepherosa Ziehau static void nfe_set_paddr_rxdesc(struct nfe_softc *, struct nfe_rx_ring *, 147ae813fd8SSepherosa Ziehau int, bus_addr_t); 148ae813fd8SSepherosa Ziehau static void nfe_set_ready_rxdesc(struct nfe_softc *, struct nfe_rx_ring *, 149ae813fd8SSepherosa Ziehau int); 150ae813fd8SSepherosa Ziehau static int nfe_newbuf_std(struct nfe_softc *, struct nfe_rx_ring *, int, 151ae813fd8SSepherosa Ziehau int); 152ae813fd8SSepherosa Ziehau static int nfe_newbuf_jumbo(struct nfe_softc *, struct nfe_rx_ring *, int, 153ae813fd8SSepherosa Ziehau int); 154ae813fd8SSepherosa Ziehau 155ec9403d0SSepherosa Ziehau static int nfe_sysctl_imtime(SYSCTL_HANDLER_ARGS); 156ec9403d0SSepherosa Ziehau 157ae813fd8SSepherosa Ziehau #define NFE_DEBUG 158ae813fd8SSepherosa Ziehau #ifdef NFE_DEBUG 159ae813fd8SSepherosa Ziehau 160ae813fd8SSepherosa Ziehau static int nfe_debug = 0; 161a455c52eSSepherosa Ziehau static int nfe_rx_ring_count = NFE_RX_RING_DEF_COUNT; 162ec9403d0SSepherosa Ziehau static int nfe_imtime = -1; 163a455c52eSSepherosa Ziehau 164a455c52eSSepherosa Ziehau TUNABLE_INT("hw.nfe.rx_ring_count", &nfe_rx_ring_count); 165ec9403d0SSepherosa Ziehau TUNABLE_INT("hw.nfe.imtime", &nfe_imtime); 166ec9403d0SSepherosa Ziehau TUNABLE_INT("hw.nfe.debug", &nfe_debug); 167ae813fd8SSepherosa Ziehau 168ae813fd8SSepherosa Ziehau #define DPRINTF(sc, fmt, ...) do { \ 169ec9403d0SSepherosa Ziehau if ((sc)->sc_debug) { \ 170ae813fd8SSepherosa Ziehau if_printf(&(sc)->arpcom.ac_if, \ 171ae813fd8SSepherosa Ziehau fmt, __VA_ARGS__); \ 172ae813fd8SSepherosa Ziehau } \ 173ae813fd8SSepherosa Ziehau } while (0) 174ae813fd8SSepherosa Ziehau 175ae813fd8SSepherosa Ziehau #define DPRINTFN(sc, lv, fmt, ...) do { \ 176ec9403d0SSepherosa Ziehau if ((sc)->sc_debug >= (lv)) { \ 177ae813fd8SSepherosa Ziehau if_printf(&(sc)->arpcom.ac_if, \ 178ae813fd8SSepherosa Ziehau fmt, __VA_ARGS__); \ 179ae813fd8SSepherosa Ziehau } \ 180ae813fd8SSepherosa Ziehau } while (0) 181ae813fd8SSepherosa Ziehau 182ae813fd8SSepherosa Ziehau #else /* !NFE_DEBUG */ 183ae813fd8SSepherosa Ziehau 184ae813fd8SSepherosa Ziehau #define DPRINTF(sc, fmt, ...) 185ae813fd8SSepherosa Ziehau #define DPRINTFN(sc, lv, fmt, ...) 186ae813fd8SSepherosa Ziehau 187ae813fd8SSepherosa Ziehau #endif /* NFE_DEBUG */ 188ae813fd8SSepherosa Ziehau 189ae813fd8SSepherosa Ziehau struct nfe_dma_ctx { 190ae813fd8SSepherosa Ziehau int nsegs; 191ae813fd8SSepherosa Ziehau bus_dma_segment_t *segs; 192ae813fd8SSepherosa Ziehau }; 193ae813fd8SSepherosa Ziehau 194ae813fd8SSepherosa Ziehau static const struct nfe_dev { 195ae813fd8SSepherosa Ziehau uint16_t vid; 196ae813fd8SSepherosa Ziehau uint16_t did; 197ae813fd8SSepherosa Ziehau const char *desc; 198ae813fd8SSepherosa Ziehau } nfe_devices[] = { 199ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_NFORCE_LAN, 20087e3db44SThomas E. Spanjaard "NVIDIA nForce Fast Ethernet" }, 201ae813fd8SSepherosa Ziehau 202ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_NFORCE2_LAN, 20387e3db44SThomas E. Spanjaard "NVIDIA nForce2 Fast Ethernet" }, 204ae813fd8SSepherosa Ziehau 205ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_NFORCE3_LAN1, 206ae813fd8SSepherosa Ziehau "NVIDIA nForce3 Gigabit Ethernet" }, 207ae813fd8SSepherosa Ziehau 20887e3db44SThomas E. Spanjaard /* XXX TGEN the next chip can also be found in the nForce2 Ultra 400Gb 20987e3db44SThomas E. Spanjaard chipset, and possibly also the 400R; it might be both nForce2- and 21087e3db44SThomas E. Spanjaard nForce3-based boards can use the same MCPs (= southbridges) */ 211ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_NFORCE3_LAN2, 212ae813fd8SSepherosa Ziehau "NVIDIA nForce3 Gigabit Ethernet" }, 213ae813fd8SSepherosa Ziehau 214ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_NFORCE3_LAN3, 215ae813fd8SSepherosa Ziehau "NVIDIA nForce3 Gigabit Ethernet" }, 216ae813fd8SSepherosa Ziehau 217ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_NFORCE3_LAN4, 218ae813fd8SSepherosa Ziehau "NVIDIA nForce3 Gigabit Ethernet" }, 219ae813fd8SSepherosa Ziehau 220ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_NFORCE3_LAN5, 221ae813fd8SSepherosa Ziehau "NVIDIA nForce3 Gigabit Ethernet" }, 222ae813fd8SSepherosa Ziehau 223ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_CK804_LAN1, 224ae813fd8SSepherosa Ziehau "NVIDIA CK804 Gigabit Ethernet" }, 225ae813fd8SSepherosa Ziehau 226ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_CK804_LAN2, 227ae813fd8SSepherosa Ziehau "NVIDIA CK804 Gigabit Ethernet" }, 228ae813fd8SSepherosa Ziehau 229ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP04_LAN1, 230ae813fd8SSepherosa Ziehau "NVIDIA MCP04 Gigabit Ethernet" }, 231ae813fd8SSepherosa Ziehau 232ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP04_LAN2, 233ae813fd8SSepherosa Ziehau "NVIDIA MCP04 Gigabit Ethernet" }, 234ae813fd8SSepherosa Ziehau 235ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP51_LAN1, 236ae813fd8SSepherosa Ziehau "NVIDIA MCP51 Gigabit Ethernet" }, 237ae813fd8SSepherosa Ziehau 238ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP51_LAN2, 239ae813fd8SSepherosa Ziehau "NVIDIA MCP51 Gigabit Ethernet" }, 240ae813fd8SSepherosa Ziehau 241ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP55_LAN1, 242ae813fd8SSepherosa Ziehau "NVIDIA MCP55 Gigabit Ethernet" }, 243ae813fd8SSepherosa Ziehau 244ae813fd8SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP55_LAN2, 2459d1ecb21SSepherosa Ziehau "NVIDIA MCP55 Gigabit Ethernet" }, 2469d1ecb21SSepherosa Ziehau 2479d1ecb21SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP61_LAN1, 2489d1ecb21SSepherosa Ziehau "NVIDIA MCP61 Gigabit Ethernet" }, 2499d1ecb21SSepherosa Ziehau 2509d1ecb21SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP61_LAN2, 2519d1ecb21SSepherosa Ziehau "NVIDIA MCP61 Gigabit Ethernet" }, 2529d1ecb21SSepherosa Ziehau 2539d1ecb21SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP61_LAN3, 2549d1ecb21SSepherosa Ziehau "NVIDIA MCP61 Gigabit Ethernet" }, 2559d1ecb21SSepherosa Ziehau 2569d1ecb21SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP61_LAN4, 2579d1ecb21SSepherosa Ziehau "NVIDIA MCP61 Gigabit Ethernet" }, 2589d1ecb21SSepherosa Ziehau 2599d1ecb21SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP65_LAN1, 2609d1ecb21SSepherosa Ziehau "NVIDIA MCP65 Gigabit Ethernet" }, 2619d1ecb21SSepherosa Ziehau 2629d1ecb21SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP65_LAN2, 2639d1ecb21SSepherosa Ziehau "NVIDIA MCP65 Gigabit Ethernet" }, 2649d1ecb21SSepherosa Ziehau 2659d1ecb21SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP65_LAN3, 2669d1ecb21SSepherosa Ziehau "NVIDIA MCP65 Gigabit Ethernet" }, 2679d1ecb21SSepherosa Ziehau 2689d1ecb21SSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP65_LAN4, 269df290cacSSepherosa Ziehau "NVIDIA MCP65 Gigabit Ethernet" }, 270df290cacSSepherosa Ziehau 271df290cacSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP67_LAN1, 272df290cacSSepherosa Ziehau "NVIDIA MCP67 Gigabit Ethernet" }, 273df290cacSSepherosa Ziehau 274df290cacSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP67_LAN2, 275df290cacSSepherosa Ziehau "NVIDIA MCP67 Gigabit Ethernet" }, 276df290cacSSepherosa Ziehau 277df290cacSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP67_LAN3, 278df290cacSSepherosa Ziehau "NVIDIA MCP67 Gigabit Ethernet" }, 279df290cacSSepherosa Ziehau 280df290cacSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP67_LAN4, 281*1d67eefeSSepherosa Ziehau "NVIDIA MCP67 Gigabit Ethernet" }, 282*1d67eefeSSepherosa Ziehau 283*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP73_LAN1, 284*1d67eefeSSepherosa Ziehau "NVIDIA MCP73 Gigabit Ethernet" }, 285*1d67eefeSSepherosa Ziehau 286*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP73_LAN2, 287*1d67eefeSSepherosa Ziehau "NVIDIA MCP73 Gigabit Ethernet" }, 288*1d67eefeSSepherosa Ziehau 289*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP73_LAN3, 290*1d67eefeSSepherosa Ziehau "NVIDIA MCP73 Gigabit Ethernet" }, 291*1d67eefeSSepherosa Ziehau 292*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP73_LAN4, 293*1d67eefeSSepherosa Ziehau "NVIDIA MCP73 Gigabit Ethernet" }, 294*1d67eefeSSepherosa Ziehau 295*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP77_LAN1, 296*1d67eefeSSepherosa Ziehau "NVIDIA MCP77 Gigabit Ethernet" }, 297*1d67eefeSSepherosa Ziehau 298*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP77_LAN2, 299*1d67eefeSSepherosa Ziehau "NVIDIA MCP77 Gigabit Ethernet" }, 300*1d67eefeSSepherosa Ziehau 301*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP77_LAN3, 302*1d67eefeSSepherosa Ziehau "NVIDIA MCP77 Gigabit Ethernet" }, 303*1d67eefeSSepherosa Ziehau 304*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP77_LAN4, 305*1d67eefeSSepherosa Ziehau "NVIDIA MCP77 Gigabit Ethernet" }, 306*1d67eefeSSepherosa Ziehau 307*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP79_LAN1, 308*1d67eefeSSepherosa Ziehau "NVIDIA MCP79 Gigabit Ethernet" }, 309*1d67eefeSSepherosa Ziehau 310*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP79_LAN2, 311*1d67eefeSSepherosa Ziehau "NVIDIA MCP79 Gigabit Ethernet" }, 312*1d67eefeSSepherosa Ziehau 313*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP79_LAN3, 314*1d67eefeSSepherosa Ziehau "NVIDIA MCP79 Gigabit Ethernet" }, 315*1d67eefeSSepherosa Ziehau 316*1d67eefeSSepherosa Ziehau { PCI_VENDOR_NVIDIA, PCI_PRODUCT_NVIDIA_MCP79_LAN4, 317*1d67eefeSSepherosa Ziehau "NVIDIA MCP79 Gigabit Ethernet" }, 318*1d67eefeSSepherosa Ziehau 319*1d67eefeSSepherosa Ziehau { 0, 0, NULL } 320ae813fd8SSepherosa Ziehau }; 321ae813fd8SSepherosa Ziehau 322ae813fd8SSepherosa Ziehau static device_method_t nfe_methods[] = { 323ae813fd8SSepherosa Ziehau /* Device interface */ 324ae813fd8SSepherosa Ziehau DEVMETHOD(device_probe, nfe_probe), 325ae813fd8SSepherosa Ziehau DEVMETHOD(device_attach, nfe_attach), 326ae813fd8SSepherosa Ziehau DEVMETHOD(device_detach, nfe_detach), 327ae813fd8SSepherosa Ziehau DEVMETHOD(device_suspend, nfe_suspend), 328ae813fd8SSepherosa Ziehau DEVMETHOD(device_resume, nfe_resume), 329ae813fd8SSepherosa Ziehau DEVMETHOD(device_shutdown, nfe_shutdown), 330ae813fd8SSepherosa Ziehau 331ae813fd8SSepherosa Ziehau /* Bus interface */ 332ae813fd8SSepherosa Ziehau DEVMETHOD(bus_print_child, bus_generic_print_child), 333ae813fd8SSepherosa Ziehau DEVMETHOD(bus_driver_added, bus_generic_driver_added), 334ae813fd8SSepherosa Ziehau 335ae813fd8SSepherosa Ziehau /* MII interface */ 336ae813fd8SSepherosa Ziehau DEVMETHOD(miibus_readreg, nfe_miibus_readreg), 337ae813fd8SSepherosa Ziehau DEVMETHOD(miibus_writereg, nfe_miibus_writereg), 338ae813fd8SSepherosa Ziehau DEVMETHOD(miibus_statchg, nfe_miibus_statchg), 339ae813fd8SSepherosa Ziehau 340ae813fd8SSepherosa Ziehau { 0, 0 } 341ae813fd8SSepherosa Ziehau }; 342ae813fd8SSepherosa Ziehau 343ae813fd8SSepherosa Ziehau static driver_t nfe_driver = { 344ae813fd8SSepherosa Ziehau "nfe", 345ae813fd8SSepherosa Ziehau nfe_methods, 346ae813fd8SSepherosa Ziehau sizeof(struct nfe_softc) 347ae813fd8SSepherosa Ziehau }; 348ae813fd8SSepherosa Ziehau 349ae813fd8SSepherosa Ziehau static devclass_t nfe_devclass; 350ae813fd8SSepherosa Ziehau 351ae813fd8SSepherosa Ziehau DECLARE_DUMMY_MODULE(if_nfe); 352ae813fd8SSepherosa Ziehau MODULE_DEPEND(if_nfe, miibus, 1, 1, 1); 353ae813fd8SSepherosa Ziehau DRIVER_MODULE(if_nfe, pci, nfe_driver, nfe_devclass, 0, 0); 354ae813fd8SSepherosa Ziehau DRIVER_MODULE(miibus, nfe, miibus_driver, miibus_devclass, 0, 0); 355ae813fd8SSepherosa Ziehau 356ae813fd8SSepherosa Ziehau static int 357ae813fd8SSepherosa Ziehau nfe_probe(device_t dev) 358ae813fd8SSepherosa Ziehau { 359ae813fd8SSepherosa Ziehau const struct nfe_dev *n; 360ae813fd8SSepherosa Ziehau uint16_t vid, did; 361ae813fd8SSepherosa Ziehau 362ae813fd8SSepherosa Ziehau vid = pci_get_vendor(dev); 363ae813fd8SSepherosa Ziehau did = pci_get_device(dev); 364ae813fd8SSepherosa Ziehau for (n = nfe_devices; n->desc != NULL; ++n) { 365ae813fd8SSepherosa Ziehau if (vid == n->vid && did == n->did) { 366ae813fd8SSepherosa Ziehau struct nfe_softc *sc = device_get_softc(dev); 367ae813fd8SSepherosa Ziehau 368ae813fd8SSepherosa Ziehau switch (did) { 369ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_NFORCE3_LAN2: 370ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_NFORCE3_LAN3: 371ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_NFORCE3_LAN4: 372ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_NFORCE3_LAN5: 373ae813fd8SSepherosa Ziehau sc->sc_flags = NFE_JUMBO_SUP | 374ae813fd8SSepherosa Ziehau NFE_HW_CSUM; 375ae813fd8SSepherosa Ziehau break; 376ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP51_LAN1: 377ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP51_LAN2: 3789d1ecb21SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP61_LAN1: 3799d1ecb21SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP61_LAN2: 3809d1ecb21SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP61_LAN3: 3819d1ecb21SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP61_LAN4: 382df290cacSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP67_LAN1: 383df290cacSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP67_LAN2: 384df290cacSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP67_LAN3: 385df290cacSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP67_LAN4: 386*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP73_LAN1: 387*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP73_LAN2: 388*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP73_LAN3: 389*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP73_LAN4: 390ae813fd8SSepherosa Ziehau sc->sc_flags = NFE_40BIT_ADDR; 391ae813fd8SSepherosa Ziehau break; 392ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_CK804_LAN1: 393ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_CK804_LAN2: 394ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP04_LAN1: 395ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP04_LAN2: 396972538a5SSepherosa Ziehau sc->sc_flags = NFE_JUMBO_SUP | 397972538a5SSepherosa Ziehau NFE_40BIT_ADDR | 398972538a5SSepherosa Ziehau NFE_HW_CSUM; 399972538a5SSepherosa Ziehau break; 4009d1ecb21SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP65_LAN1: 4019d1ecb21SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP65_LAN2: 4029d1ecb21SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP65_LAN3: 4039d1ecb21SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP65_LAN4: 404ae813fd8SSepherosa Ziehau sc->sc_flags = NFE_JUMBO_SUP | 405972538a5SSepherosa Ziehau NFE_40BIT_ADDR; 406ae813fd8SSepherosa Ziehau break; 407ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP55_LAN1: 408ae813fd8SSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP55_LAN2: 409ae813fd8SSepherosa Ziehau sc->sc_flags = NFE_JUMBO_SUP | 410ae813fd8SSepherosa Ziehau NFE_40BIT_ADDR | 411ae813fd8SSepherosa Ziehau NFE_HW_CSUM | 412ae813fd8SSepherosa Ziehau NFE_HW_VLAN; 413ae813fd8SSepherosa Ziehau break; 414*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP77_LAN1: 415*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP77_LAN2: 416*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP77_LAN3: 417*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP77_LAN4: 418*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP79_LAN1: 419*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP79_LAN2: 420*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP79_LAN3: 421*1d67eefeSSepherosa Ziehau case PCI_PRODUCT_NVIDIA_MCP79_LAN4: 422*1d67eefeSSepherosa Ziehau sc->sc_flags = NFE_40BIT_ADDR | 423*1d67eefeSSepherosa Ziehau NFE_HW_CSUM; 424*1d67eefeSSepherosa Ziehau break; 425ae813fd8SSepherosa Ziehau } 426ae813fd8SSepherosa Ziehau 427ae813fd8SSepherosa Ziehau device_set_desc(dev, n->desc); 428dbcd0c9bSMatthew Dillon device_set_async_attach(dev, TRUE); 429ae813fd8SSepherosa Ziehau return 0; 430ae813fd8SSepherosa Ziehau } 431ae813fd8SSepherosa Ziehau } 432ae813fd8SSepherosa Ziehau return ENXIO; 433ae813fd8SSepherosa Ziehau } 434ae813fd8SSepherosa Ziehau 435ae813fd8SSepherosa Ziehau static int 436ae813fd8SSepherosa Ziehau nfe_attach(device_t dev) 437ae813fd8SSepherosa Ziehau { 438ae813fd8SSepherosa Ziehau struct nfe_softc *sc = device_get_softc(dev); 439ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 440ae813fd8SSepherosa Ziehau uint8_t eaddr[ETHER_ADDR_LEN]; 441ae813fd8SSepherosa Ziehau int error; 442ae813fd8SSepherosa Ziehau 443ae813fd8SSepherosa Ziehau if_initname(ifp, device_get_name(dev), device_get_unit(dev)); 444ae813fd8SSepherosa Ziehau lwkt_serialize_init(&sc->sc_jbuf_serializer); 445ae813fd8SSepherosa Ziehau 446ec9403d0SSepherosa Ziehau /* 447ec9403d0SSepherosa Ziehau * Initialize sysctl variables 448ec9403d0SSepherosa Ziehau */ 449ec9403d0SSepherosa Ziehau sc->sc_imtime = nfe_imtime; 450ec9403d0SSepherosa Ziehau sc->sc_irq_enable = NFE_IRQ_ENABLE(sc); 451ec9403d0SSepherosa Ziehau sc->sc_rx_ring_count = nfe_rx_ring_count; 452ec9403d0SSepherosa Ziehau sc->sc_debug = nfe_debug; 453ec9403d0SSepherosa Ziehau 454ae813fd8SSepherosa Ziehau sc->sc_mem_rid = PCIR_BAR(0); 455ae813fd8SSepherosa Ziehau 456ae813fd8SSepherosa Ziehau #ifndef BURN_BRIDGES 457ae813fd8SSepherosa Ziehau if (pci_get_powerstate(dev) != PCI_POWERSTATE_D0) { 458ae813fd8SSepherosa Ziehau uint32_t mem, irq; 459ae813fd8SSepherosa Ziehau 460ae813fd8SSepherosa Ziehau mem = pci_read_config(dev, sc->sc_mem_rid, 4); 461ae813fd8SSepherosa Ziehau irq = pci_read_config(dev, PCIR_INTLINE, 4); 462ae813fd8SSepherosa Ziehau 463ae813fd8SSepherosa Ziehau device_printf(dev, "chip is in D%d power mode " 464ae813fd8SSepherosa Ziehau "-- setting to D0\n", pci_get_powerstate(dev)); 465ae813fd8SSepherosa Ziehau 466ae813fd8SSepherosa Ziehau pci_set_powerstate(dev, PCI_POWERSTATE_D0); 467ae813fd8SSepherosa Ziehau 468ae813fd8SSepherosa Ziehau pci_write_config(dev, sc->sc_mem_rid, mem, 4); 469ae813fd8SSepherosa Ziehau pci_write_config(dev, PCIR_INTLINE, irq, 4); 470ae813fd8SSepherosa Ziehau } 471ae813fd8SSepherosa Ziehau #endif /* !BURN_BRIDGE */ 472ae813fd8SSepherosa Ziehau 473ae813fd8SSepherosa Ziehau /* Enable bus mastering */ 474ae813fd8SSepherosa Ziehau pci_enable_busmaster(dev); 475ae813fd8SSepherosa Ziehau 476ae813fd8SSepherosa Ziehau /* Allocate IO memory */ 477ae813fd8SSepherosa Ziehau sc->sc_mem_res = bus_alloc_resource_any(dev, SYS_RES_MEMORY, 478ae813fd8SSepherosa Ziehau &sc->sc_mem_rid, RF_ACTIVE); 479ae813fd8SSepherosa Ziehau if (sc->sc_mem_res == NULL) { 480ae813fd8SSepherosa Ziehau device_printf(dev, "cound not allocate io memory\n"); 481ae813fd8SSepherosa Ziehau return ENXIO; 482ae813fd8SSepherosa Ziehau } 483ae813fd8SSepherosa Ziehau sc->sc_memh = rman_get_bushandle(sc->sc_mem_res); 484ae813fd8SSepherosa Ziehau sc->sc_memt = rman_get_bustag(sc->sc_mem_res); 485ae813fd8SSepherosa Ziehau 486ae813fd8SSepherosa Ziehau /* Allocate IRQ */ 487ae813fd8SSepherosa Ziehau sc->sc_irq_rid = 0; 488ae813fd8SSepherosa Ziehau sc->sc_irq_res = bus_alloc_resource_any(dev, SYS_RES_IRQ, 489ae813fd8SSepherosa Ziehau &sc->sc_irq_rid, 490ae813fd8SSepherosa Ziehau RF_SHAREABLE | RF_ACTIVE); 491ae813fd8SSepherosa Ziehau if (sc->sc_irq_res == NULL) { 492ae813fd8SSepherosa Ziehau device_printf(dev, "could not allocate irq\n"); 493ae813fd8SSepherosa Ziehau error = ENXIO; 494ae813fd8SSepherosa Ziehau goto fail; 495ae813fd8SSepherosa Ziehau } 496ae813fd8SSepherosa Ziehau 497ae813fd8SSepherosa Ziehau nfe_get_macaddr(sc, eaddr); 498ae813fd8SSepherosa Ziehau 499ae813fd8SSepherosa Ziehau /* 500ae813fd8SSepherosa Ziehau * Allocate Tx and Rx rings. 501ae813fd8SSepherosa Ziehau */ 502ae813fd8SSepherosa Ziehau error = nfe_alloc_tx_ring(sc, &sc->txq); 503ae813fd8SSepherosa Ziehau if (error) { 504ae813fd8SSepherosa Ziehau device_printf(dev, "could not allocate Tx ring\n"); 505ae813fd8SSepherosa Ziehau goto fail; 506ae813fd8SSepherosa Ziehau } 507ae813fd8SSepherosa Ziehau 508ae813fd8SSepherosa Ziehau error = nfe_alloc_rx_ring(sc, &sc->rxq); 509ae813fd8SSepherosa Ziehau if (error) { 510ae813fd8SSepherosa Ziehau device_printf(dev, "could not allocate Rx ring\n"); 511ae813fd8SSepherosa Ziehau goto fail; 512ae813fd8SSepherosa Ziehau } 513ae813fd8SSepherosa Ziehau 514ec9403d0SSepherosa Ziehau /* 515ec9403d0SSepherosa Ziehau * Create sysctl tree 516ec9403d0SSepherosa Ziehau */ 517ec9403d0SSepherosa Ziehau sysctl_ctx_init(&sc->sc_sysctl_ctx); 518ec9403d0SSepherosa Ziehau sc->sc_sysctl_tree = SYSCTL_ADD_NODE(&sc->sc_sysctl_ctx, 519ec9403d0SSepherosa Ziehau SYSCTL_STATIC_CHILDREN(_hw), 520ec9403d0SSepherosa Ziehau OID_AUTO, 521ec9403d0SSepherosa Ziehau device_get_nameunit(dev), 522ec9403d0SSepherosa Ziehau CTLFLAG_RD, 0, ""); 523ec9403d0SSepherosa Ziehau if (sc->sc_sysctl_tree == NULL) { 524ec9403d0SSepherosa Ziehau device_printf(dev, "can't add sysctl node\n"); 525ec9403d0SSepherosa Ziehau error = ENXIO; 526ec9403d0SSepherosa Ziehau goto fail; 527ec9403d0SSepherosa Ziehau } 528ec9403d0SSepherosa Ziehau SYSCTL_ADD_PROC(&sc->sc_sysctl_ctx, 529ec9403d0SSepherosa Ziehau SYSCTL_CHILDREN(sc->sc_sysctl_tree), 530ec9403d0SSepherosa Ziehau OID_AUTO, "imtimer", CTLTYPE_INT | CTLFLAG_RW, 531ec9403d0SSepherosa Ziehau sc, 0, nfe_sysctl_imtime, "I", 532ec9403d0SSepherosa Ziehau "Interrupt moderation time (usec). " 533ec9403d0SSepherosa Ziehau "-1 to disable interrupt moderation."); 534ec9403d0SSepherosa Ziehau SYSCTL_ADD_INT(NULL, SYSCTL_CHILDREN(sc->sc_sysctl_tree), OID_AUTO, 535ec9403d0SSepherosa Ziehau "rx_ring_count", CTLFLAG_RD, &sc->sc_rx_ring_count, 536ec9403d0SSepherosa Ziehau 0, "RX ring count"); 537ec9403d0SSepherosa Ziehau SYSCTL_ADD_INT(NULL, SYSCTL_CHILDREN(sc->sc_sysctl_tree), OID_AUTO, 538ec9403d0SSepherosa Ziehau "debug", CTLFLAG_RW, &sc->sc_debug, 539ec9403d0SSepherosa Ziehau 0, "control debugging printfs"); 540ec9403d0SSepherosa Ziehau 541ae813fd8SSepherosa Ziehau error = mii_phy_probe(dev, &sc->sc_miibus, nfe_ifmedia_upd, 542ae813fd8SSepherosa Ziehau nfe_ifmedia_sts); 543ae813fd8SSepherosa Ziehau if (error) { 544ae813fd8SSepherosa Ziehau device_printf(dev, "MII without any phy\n"); 545ae813fd8SSepherosa Ziehau goto fail; 546ae813fd8SSepherosa Ziehau } 547ae813fd8SSepherosa Ziehau 548ae813fd8SSepherosa Ziehau ifp->if_softc = sc; 549ae813fd8SSepherosa Ziehau ifp->if_mtu = ETHERMTU; 550ae813fd8SSepherosa Ziehau ifp->if_flags = IFF_BROADCAST | IFF_SIMPLEX | IFF_MULTICAST; 551ae813fd8SSepherosa Ziehau ifp->if_ioctl = nfe_ioctl; 552ae813fd8SSepherosa Ziehau ifp->if_start = nfe_start; 553ae813fd8SSepherosa Ziehau #ifdef DEVICE_POLLING 554ae813fd8SSepherosa Ziehau ifp->if_poll = nfe_poll; 555ae813fd8SSepherosa Ziehau #endif 556ae813fd8SSepherosa Ziehau ifp->if_watchdog = nfe_watchdog; 557ae813fd8SSepherosa Ziehau ifp->if_init = nfe_init; 558ae813fd8SSepherosa Ziehau ifq_set_maxlen(&ifp->if_snd, NFE_IFQ_MAXLEN); 559ae813fd8SSepherosa Ziehau ifq_set_ready(&ifp->if_snd); 560ae813fd8SSepherosa Ziehau 561ae813fd8SSepherosa Ziehau ifp->if_capabilities = IFCAP_VLAN_MTU; 562ae813fd8SSepherosa Ziehau 563ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_HW_VLAN) 564ae813fd8SSepherosa Ziehau ifp->if_capabilities |= IFCAP_VLAN_HWTAGGING; 565ae813fd8SSepherosa Ziehau 566ae813fd8SSepherosa Ziehau #ifdef NFE_CSUM 567ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_HW_CSUM) { 56811db6c57SSepherosa Ziehau ifp->if_capabilities |= IFCAP_HWCSUM; 56911db6c57SSepherosa Ziehau ifp->if_hwassist = NFE_CSUM_FEATURES; 570ae813fd8SSepherosa Ziehau } 57111db6c57SSepherosa Ziehau #else 57211db6c57SSepherosa Ziehau sc->sc_flags &= ~NFE_HW_CSUM; 573ae813fd8SSepherosa Ziehau #endif 574ae813fd8SSepherosa Ziehau ifp->if_capenable = ifp->if_capabilities; 575ae813fd8SSepherosa Ziehau 576ae813fd8SSepherosa Ziehau callout_init(&sc->sc_tick_ch); 577ae813fd8SSepherosa Ziehau 578ae813fd8SSepherosa Ziehau ether_ifattach(ifp, eaddr, NULL); 579ae813fd8SSepherosa Ziehau 580ae813fd8SSepherosa Ziehau error = bus_setup_intr(dev, sc->sc_irq_res, INTR_MPSAFE, nfe_intr, sc, 581ae813fd8SSepherosa Ziehau &sc->sc_ih, ifp->if_serializer); 582ae813fd8SSepherosa Ziehau if (error) { 583ae813fd8SSepherosa Ziehau device_printf(dev, "could not setup intr\n"); 584ae813fd8SSepherosa Ziehau ether_ifdetach(ifp); 585ae813fd8SSepherosa Ziehau goto fail; 586ae813fd8SSepherosa Ziehau } 587ae813fd8SSepherosa Ziehau 5889db4b353SSepherosa Ziehau ifp->if_cpuid = ithread_cpuid(rman_get_start(sc->sc_irq_res)); 5899db4b353SSepherosa Ziehau KKASSERT(ifp->if_cpuid >= 0 && ifp->if_cpuid < ncpus); 5909db4b353SSepherosa Ziehau 591ae813fd8SSepherosa Ziehau return 0; 592ae813fd8SSepherosa Ziehau fail: 593ae813fd8SSepherosa Ziehau nfe_detach(dev); 594ae813fd8SSepherosa Ziehau return error; 595ae813fd8SSepherosa Ziehau } 596ae813fd8SSepherosa Ziehau 597ae813fd8SSepherosa Ziehau static int 598ae813fd8SSepherosa Ziehau nfe_detach(device_t dev) 599ae813fd8SSepherosa Ziehau { 600ae813fd8SSepherosa Ziehau struct nfe_softc *sc = device_get_softc(dev); 601ae813fd8SSepherosa Ziehau 602ae813fd8SSepherosa Ziehau if (device_is_attached(dev)) { 603ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 604ae813fd8SSepherosa Ziehau 605ae813fd8SSepherosa Ziehau lwkt_serialize_enter(ifp->if_serializer); 606ae813fd8SSepherosa Ziehau nfe_stop(sc); 607ae813fd8SSepherosa Ziehau bus_teardown_intr(dev, sc->sc_irq_res, sc->sc_ih); 608ae813fd8SSepherosa Ziehau lwkt_serialize_exit(ifp->if_serializer); 609ae813fd8SSepherosa Ziehau 610ae813fd8SSepherosa Ziehau ether_ifdetach(ifp); 611ae813fd8SSepherosa Ziehau } 612ae813fd8SSepherosa Ziehau 613ae813fd8SSepherosa Ziehau if (sc->sc_miibus != NULL) 614ae813fd8SSepherosa Ziehau device_delete_child(dev, sc->sc_miibus); 615ae813fd8SSepherosa Ziehau bus_generic_detach(dev); 616ae813fd8SSepherosa Ziehau 617ec9403d0SSepherosa Ziehau if (sc->sc_sysctl_tree != NULL) 618ec9403d0SSepherosa Ziehau sysctl_ctx_free(&sc->sc_sysctl_ctx); 619ec9403d0SSepherosa Ziehau 620ae813fd8SSepherosa Ziehau if (sc->sc_irq_res != NULL) { 621ae813fd8SSepherosa Ziehau bus_release_resource(dev, SYS_RES_IRQ, sc->sc_irq_rid, 622ae813fd8SSepherosa Ziehau sc->sc_irq_res); 623ae813fd8SSepherosa Ziehau } 624ae813fd8SSepherosa Ziehau 625ae813fd8SSepherosa Ziehau if (sc->sc_mem_res != NULL) { 626ae813fd8SSepherosa Ziehau bus_release_resource(dev, SYS_RES_MEMORY, sc->sc_mem_rid, 627ae813fd8SSepherosa Ziehau sc->sc_mem_res); 628ae813fd8SSepherosa Ziehau } 629ae813fd8SSepherosa Ziehau 630ae813fd8SSepherosa Ziehau nfe_free_tx_ring(sc, &sc->txq); 631ae813fd8SSepherosa Ziehau nfe_free_rx_ring(sc, &sc->rxq); 632ae813fd8SSepherosa Ziehau 633ae813fd8SSepherosa Ziehau return 0; 634ae813fd8SSepherosa Ziehau } 635ae813fd8SSepherosa Ziehau 636ae813fd8SSepherosa Ziehau static void 637ae813fd8SSepherosa Ziehau nfe_shutdown(device_t dev) 638ae813fd8SSepherosa Ziehau { 639ae813fd8SSepherosa Ziehau struct nfe_softc *sc = device_get_softc(dev); 640ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 641ae813fd8SSepherosa Ziehau 642ae813fd8SSepherosa Ziehau lwkt_serialize_enter(ifp->if_serializer); 643ae813fd8SSepherosa Ziehau nfe_stop(sc); 644ae813fd8SSepherosa Ziehau lwkt_serialize_exit(ifp->if_serializer); 645ae813fd8SSepherosa Ziehau } 646ae813fd8SSepherosa Ziehau 647ae813fd8SSepherosa Ziehau static int 648ae813fd8SSepherosa Ziehau nfe_suspend(device_t dev) 649ae813fd8SSepherosa Ziehau { 650ae813fd8SSepherosa Ziehau struct nfe_softc *sc = device_get_softc(dev); 651ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 652ae813fd8SSepherosa Ziehau 653ae813fd8SSepherosa Ziehau lwkt_serialize_enter(ifp->if_serializer); 654ae813fd8SSepherosa Ziehau nfe_stop(sc); 655ae813fd8SSepherosa Ziehau lwkt_serialize_exit(ifp->if_serializer); 656ae813fd8SSepherosa Ziehau 657ae813fd8SSepherosa Ziehau return 0; 658ae813fd8SSepherosa Ziehau } 659ae813fd8SSepherosa Ziehau 660ae813fd8SSepherosa Ziehau static int 661ae813fd8SSepherosa Ziehau nfe_resume(device_t dev) 662ae813fd8SSepherosa Ziehau { 663ae813fd8SSepherosa Ziehau struct nfe_softc *sc = device_get_softc(dev); 664ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 665ae813fd8SSepherosa Ziehau 666ae813fd8SSepherosa Ziehau lwkt_serialize_enter(ifp->if_serializer); 667751890abSMatthew Dillon if (ifp->if_flags & IFF_UP) 6683ffca68aSSepherosa Ziehau nfe_init(sc); 669ae813fd8SSepherosa Ziehau lwkt_serialize_exit(ifp->if_serializer); 670ae813fd8SSepherosa Ziehau 671ae813fd8SSepherosa Ziehau return 0; 672ae813fd8SSepherosa Ziehau } 673ae813fd8SSepherosa Ziehau 674ae813fd8SSepherosa Ziehau static void 675ae813fd8SSepherosa Ziehau nfe_miibus_statchg(device_t dev) 676ae813fd8SSepherosa Ziehau { 677ae813fd8SSepherosa Ziehau struct nfe_softc *sc = device_get_softc(dev); 678ae813fd8SSepherosa Ziehau struct mii_data *mii = device_get_softc(sc->sc_miibus); 679ae813fd8SSepherosa Ziehau uint32_t phy, seed, misc = NFE_MISC1_MAGIC, link = NFE_MEDIA_SET; 680ae813fd8SSepherosa Ziehau 681ae813fd8SSepherosa Ziehau phy = NFE_READ(sc, NFE_PHY_IFACE); 682ae813fd8SSepherosa Ziehau phy &= ~(NFE_PHY_HDX | NFE_PHY_100TX | NFE_PHY_1000T); 683ae813fd8SSepherosa Ziehau 684ae813fd8SSepherosa Ziehau seed = NFE_READ(sc, NFE_RNDSEED); 685ae813fd8SSepherosa Ziehau seed &= ~NFE_SEED_MASK; 686ae813fd8SSepherosa Ziehau 687ae813fd8SSepherosa Ziehau if ((mii->mii_media_active & IFM_GMASK) == IFM_HDX) { 688ae813fd8SSepherosa Ziehau phy |= NFE_PHY_HDX; /* half-duplex */ 689ae813fd8SSepherosa Ziehau misc |= NFE_MISC1_HDX; 690ae813fd8SSepherosa Ziehau } 691ae813fd8SSepherosa Ziehau 692ae813fd8SSepherosa Ziehau switch (IFM_SUBTYPE(mii->mii_media_active)) { 693ae813fd8SSepherosa Ziehau case IFM_1000_T: /* full-duplex only */ 694ae813fd8SSepherosa Ziehau link |= NFE_MEDIA_1000T; 695ae813fd8SSepherosa Ziehau seed |= NFE_SEED_1000T; 696ae813fd8SSepherosa Ziehau phy |= NFE_PHY_1000T; 697ae813fd8SSepherosa Ziehau break; 698ae813fd8SSepherosa Ziehau case IFM_100_TX: 699ae813fd8SSepherosa Ziehau link |= NFE_MEDIA_100TX; 700ae813fd8SSepherosa Ziehau seed |= NFE_SEED_100TX; 701ae813fd8SSepherosa Ziehau phy |= NFE_PHY_100TX; 702ae813fd8SSepherosa Ziehau break; 703ae813fd8SSepherosa Ziehau case IFM_10_T: 704ae813fd8SSepherosa Ziehau link |= NFE_MEDIA_10T; 705ae813fd8SSepherosa Ziehau seed |= NFE_SEED_10T; 706ae813fd8SSepherosa Ziehau break; 707ae813fd8SSepherosa Ziehau } 708ae813fd8SSepherosa Ziehau 709ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RNDSEED, seed); /* XXX: gigabit NICs only? */ 710ae813fd8SSepherosa Ziehau 711ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PHY_IFACE, phy); 712ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_MISC1, misc); 713ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_LINKSPEED, link); 714ae813fd8SSepherosa Ziehau } 715ae813fd8SSepherosa Ziehau 716ae813fd8SSepherosa Ziehau static int 717ae813fd8SSepherosa Ziehau nfe_miibus_readreg(device_t dev, int phy, int reg) 718ae813fd8SSepherosa Ziehau { 719ae813fd8SSepherosa Ziehau struct nfe_softc *sc = device_get_softc(dev); 720ae813fd8SSepherosa Ziehau uint32_t val; 721ae813fd8SSepherosa Ziehau int ntries; 722ae813fd8SSepherosa Ziehau 723ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PHY_STATUS, 0xf); 724ae813fd8SSepherosa Ziehau 725ae813fd8SSepherosa Ziehau if (NFE_READ(sc, NFE_PHY_CTL) & NFE_PHY_BUSY) { 726ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PHY_CTL, NFE_PHY_BUSY); 727ae813fd8SSepherosa Ziehau DELAY(100); 728ae813fd8SSepherosa Ziehau } 729ae813fd8SSepherosa Ziehau 730ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PHY_CTL, (phy << NFE_PHYADD_SHIFT) | reg); 731ae813fd8SSepherosa Ziehau 732ae813fd8SSepherosa Ziehau for (ntries = 0; ntries < 1000; ntries++) { 733ae813fd8SSepherosa Ziehau DELAY(100); 734ae813fd8SSepherosa Ziehau if (!(NFE_READ(sc, NFE_PHY_CTL) & NFE_PHY_BUSY)) 735ae813fd8SSepherosa Ziehau break; 736ae813fd8SSepherosa Ziehau } 737ae813fd8SSepherosa Ziehau if (ntries == 1000) { 738ae813fd8SSepherosa Ziehau DPRINTFN(sc, 2, "timeout waiting for PHY %s\n", ""); 739ae813fd8SSepherosa Ziehau return 0; 740ae813fd8SSepherosa Ziehau } 741ae813fd8SSepherosa Ziehau 742ae813fd8SSepherosa Ziehau if (NFE_READ(sc, NFE_PHY_STATUS) & NFE_PHY_ERROR) { 743ae813fd8SSepherosa Ziehau DPRINTFN(sc, 2, "could not read PHY %s\n", ""); 744ae813fd8SSepherosa Ziehau return 0; 745ae813fd8SSepherosa Ziehau } 746ae813fd8SSepherosa Ziehau 747ae813fd8SSepherosa Ziehau val = NFE_READ(sc, NFE_PHY_DATA); 748ae813fd8SSepherosa Ziehau if (val != 0xffffffff && val != 0) 749ae813fd8SSepherosa Ziehau sc->mii_phyaddr = phy; 750ae813fd8SSepherosa Ziehau 751ae813fd8SSepherosa Ziehau DPRINTFN(sc, 2, "mii read phy %d reg 0x%x ret 0x%x\n", phy, reg, val); 752ae813fd8SSepherosa Ziehau 753ae813fd8SSepherosa Ziehau return val; 754ae813fd8SSepherosa Ziehau } 755ae813fd8SSepherosa Ziehau 756ae813fd8SSepherosa Ziehau static void 757ae813fd8SSepherosa Ziehau nfe_miibus_writereg(device_t dev, int phy, int reg, int val) 758ae813fd8SSepherosa Ziehau { 759ae813fd8SSepherosa Ziehau struct nfe_softc *sc = device_get_softc(dev); 760ae813fd8SSepherosa Ziehau uint32_t ctl; 761ae813fd8SSepherosa Ziehau int ntries; 762ae813fd8SSepherosa Ziehau 763ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PHY_STATUS, 0xf); 764ae813fd8SSepherosa Ziehau 765ae813fd8SSepherosa Ziehau if (NFE_READ(sc, NFE_PHY_CTL) & NFE_PHY_BUSY) { 766ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PHY_CTL, NFE_PHY_BUSY); 767ae813fd8SSepherosa Ziehau DELAY(100); 768ae813fd8SSepherosa Ziehau } 769ae813fd8SSepherosa Ziehau 770ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PHY_DATA, val); 771ae813fd8SSepherosa Ziehau ctl = NFE_PHY_WRITE | (phy << NFE_PHYADD_SHIFT) | reg; 772ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PHY_CTL, ctl); 773ae813fd8SSepherosa Ziehau 774ae813fd8SSepherosa Ziehau for (ntries = 0; ntries < 1000; ntries++) { 775ae813fd8SSepherosa Ziehau DELAY(100); 776ae813fd8SSepherosa Ziehau if (!(NFE_READ(sc, NFE_PHY_CTL) & NFE_PHY_BUSY)) 777ae813fd8SSepherosa Ziehau break; 778ae813fd8SSepherosa Ziehau } 779ae813fd8SSepherosa Ziehau 780ae813fd8SSepherosa Ziehau #ifdef NFE_DEBUG 781ae813fd8SSepherosa Ziehau if (ntries == 1000) 782ae813fd8SSepherosa Ziehau DPRINTFN(sc, 2, "could not write to PHY %s\n", ""); 783ae813fd8SSepherosa Ziehau #endif 784ae813fd8SSepherosa Ziehau } 785ae813fd8SSepherosa Ziehau 786ae813fd8SSepherosa Ziehau #ifdef DEVICE_POLLING 787ae813fd8SSepherosa Ziehau 788ae813fd8SSepherosa Ziehau static void 789ae813fd8SSepherosa Ziehau nfe_poll(struct ifnet *ifp, enum poll_cmd cmd, int count) 790ae813fd8SSepherosa Ziehau { 791ae813fd8SSepherosa Ziehau struct nfe_softc *sc = ifp->if_softc; 792ae813fd8SSepherosa Ziehau 793ec9403d0SSepherosa Ziehau ASSERT_SERIALIZED(ifp->if_serializer); 794ec9403d0SSepherosa Ziehau 795ae813fd8SSepherosa Ziehau switch(cmd) { 796ae813fd8SSepherosa Ziehau case POLL_REGISTER: 797ae813fd8SSepherosa Ziehau /* Disable interrupts */ 798ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_IRQ_MASK, 0); 799ae813fd8SSepherosa Ziehau break; 800ae813fd8SSepherosa Ziehau case POLL_DEREGISTER: 801ae813fd8SSepherosa Ziehau /* enable interrupts */ 802ec9403d0SSepherosa Ziehau NFE_WRITE(sc, NFE_IRQ_MASK, sc->sc_irq_enable); 803ae813fd8SSepherosa Ziehau break; 804ae813fd8SSepherosa Ziehau case POLL_AND_CHECK_STATUS: 805ae813fd8SSepherosa Ziehau /* fall through */ 806ae813fd8SSepherosa Ziehau case POLL_ONLY: 807ae813fd8SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) { 808ae813fd8SSepherosa Ziehau nfe_rxeof(sc); 809ae813fd8SSepherosa Ziehau nfe_txeof(sc); 810ae813fd8SSepherosa Ziehau } 811ae813fd8SSepherosa Ziehau break; 812ae813fd8SSepherosa Ziehau } 813ae813fd8SSepherosa Ziehau } 814ae813fd8SSepherosa Ziehau 815ae813fd8SSepherosa Ziehau #endif 816ae813fd8SSepherosa Ziehau 817ae813fd8SSepherosa Ziehau static void 818ae813fd8SSepherosa Ziehau nfe_intr(void *arg) 819ae813fd8SSepherosa Ziehau { 820ae813fd8SSepherosa Ziehau struct nfe_softc *sc = arg; 821ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 822ae813fd8SSepherosa Ziehau uint32_t r; 823ae813fd8SSepherosa Ziehau 824ae813fd8SSepherosa Ziehau r = NFE_READ(sc, NFE_IRQ_STATUS); 825ae813fd8SSepherosa Ziehau if (r == 0) 826ae813fd8SSepherosa Ziehau return; /* not for us */ 827ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_IRQ_STATUS, r); 828ae813fd8SSepherosa Ziehau 829ae813fd8SSepherosa Ziehau DPRINTFN(sc, 5, "%s: interrupt register %x\n", __func__, r); 830ae813fd8SSepherosa Ziehau 831ae813fd8SSepherosa Ziehau if (r & NFE_IRQ_LINK) { 832ae813fd8SSepherosa Ziehau NFE_READ(sc, NFE_PHY_STATUS); 833ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PHY_STATUS, 0xf); 834ae813fd8SSepherosa Ziehau DPRINTF(sc, "link state changed %s\n", ""); 835ae813fd8SSepherosa Ziehau } 836ae813fd8SSepherosa Ziehau 837ae813fd8SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) { 838ae813fd8SSepherosa Ziehau /* check Rx ring */ 839ae813fd8SSepherosa Ziehau nfe_rxeof(sc); 840ae813fd8SSepherosa Ziehau 841ae813fd8SSepherosa Ziehau /* check Tx ring */ 842ae813fd8SSepherosa Ziehau nfe_txeof(sc); 843ae813fd8SSepherosa Ziehau } 844ae813fd8SSepherosa Ziehau } 845ae813fd8SSepherosa Ziehau 846ae813fd8SSepherosa Ziehau static int 847ae813fd8SSepherosa Ziehau nfe_ioctl(struct ifnet *ifp, u_long cmd, caddr_t data, struct ucred *cr) 848ae813fd8SSepherosa Ziehau { 849ae813fd8SSepherosa Ziehau struct nfe_softc *sc = ifp->if_softc; 850ae813fd8SSepherosa Ziehau struct ifreq *ifr = (struct ifreq *)data; 851ae813fd8SSepherosa Ziehau struct mii_data *mii; 852ae813fd8SSepherosa Ziehau int error = 0, mask; 853ae813fd8SSepherosa Ziehau 854ae813fd8SSepherosa Ziehau switch (cmd) { 855ae813fd8SSepherosa Ziehau case SIOCSIFMTU: 856a455c52eSSepherosa Ziehau if (((sc->sc_flags & NFE_JUMBO_SUP) && 857a455c52eSSepherosa Ziehau ifr->ifr_mtu > NFE_JUMBO_MTU) || 858a455c52eSSepherosa Ziehau ((sc->sc_flags & NFE_JUMBO_SUP) == 0 && 859a455c52eSSepherosa Ziehau ifr->ifr_mtu > ETHERMTU)) { 860a455c52eSSepherosa Ziehau return EINVAL; 861a455c52eSSepherosa Ziehau } else if (ifp->if_mtu != ifr->ifr_mtu) { 862a455c52eSSepherosa Ziehau ifp->if_mtu = ifr->ifr_mtu; 863a455c52eSSepherosa Ziehau nfe_init(sc); 864a455c52eSSepherosa Ziehau } 865ae813fd8SSepherosa Ziehau break; 866ae813fd8SSepherosa Ziehau case SIOCSIFFLAGS: 867ae813fd8SSepherosa Ziehau if (ifp->if_flags & IFF_UP) { 868ae813fd8SSepherosa Ziehau /* 869ae813fd8SSepherosa Ziehau * If only the PROMISC or ALLMULTI flag changes, then 870ae813fd8SSepherosa Ziehau * don't do a full re-init of the chip, just update 871ae813fd8SSepherosa Ziehau * the Rx filter. 872ae813fd8SSepherosa Ziehau */ 873ae813fd8SSepherosa Ziehau if ((ifp->if_flags & IFF_RUNNING) && 874ae813fd8SSepherosa Ziehau ((ifp->if_flags ^ sc->sc_if_flags) & 875ae813fd8SSepherosa Ziehau (IFF_ALLMULTI | IFF_PROMISC)) != 0) { 876ae813fd8SSepherosa Ziehau nfe_setmulti(sc); 877ae813fd8SSepherosa Ziehau } else { 878ae813fd8SSepherosa Ziehau if (!(ifp->if_flags & IFF_RUNNING)) 879ae813fd8SSepherosa Ziehau nfe_init(sc); 880ae813fd8SSepherosa Ziehau } 881ae813fd8SSepherosa Ziehau } else { 882ae813fd8SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) 883ae813fd8SSepherosa Ziehau nfe_stop(sc); 884ae813fd8SSepherosa Ziehau } 885ae813fd8SSepherosa Ziehau sc->sc_if_flags = ifp->if_flags; 886ae813fd8SSepherosa Ziehau break; 887ae813fd8SSepherosa Ziehau case SIOCADDMULTI: 888ae813fd8SSepherosa Ziehau case SIOCDELMULTI: 889ae813fd8SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) 890ae813fd8SSepherosa Ziehau nfe_setmulti(sc); 891ae813fd8SSepherosa Ziehau break; 892ae813fd8SSepherosa Ziehau case SIOCSIFMEDIA: 893ae813fd8SSepherosa Ziehau case SIOCGIFMEDIA: 894ae813fd8SSepherosa Ziehau mii = device_get_softc(sc->sc_miibus); 895ae813fd8SSepherosa Ziehau error = ifmedia_ioctl(ifp, ifr, &mii->mii_media, cmd); 896ae813fd8SSepherosa Ziehau break; 897ae813fd8SSepherosa Ziehau case SIOCSIFCAP: 898bf2a5992SSepherosa Ziehau mask = (ifr->ifr_reqcap ^ ifp->if_capenable) & IFCAP_HWCSUM; 899bf2a5992SSepherosa Ziehau if (mask && (ifp->if_capabilities & IFCAP_HWCSUM)) { 900bf2a5992SSepherosa Ziehau ifp->if_capenable ^= mask; 901bf2a5992SSepherosa Ziehau if (IFCAP_TXCSUM & ifp->if_capenable) 90211db6c57SSepherosa Ziehau ifp->if_hwassist = NFE_CSUM_FEATURES; 903bf2a5992SSepherosa Ziehau else 904bf2a5992SSepherosa Ziehau ifp->if_hwassist = 0; 90511db6c57SSepherosa Ziehau 90611db6c57SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) 90711db6c57SSepherosa Ziehau nfe_init(sc); 908ae813fd8SSepherosa Ziehau } 909ae813fd8SSepherosa Ziehau break; 910ae813fd8SSepherosa Ziehau default: 911ae813fd8SSepherosa Ziehau error = ether_ioctl(ifp, cmd, data); 912ae813fd8SSepherosa Ziehau break; 913ae813fd8SSepherosa Ziehau } 914ae813fd8SSepherosa Ziehau return error; 915ae813fd8SSepherosa Ziehau } 916ae813fd8SSepherosa Ziehau 917ae813fd8SSepherosa Ziehau static void 918ae813fd8SSepherosa Ziehau nfe_rxeof(struct nfe_softc *sc) 919ae813fd8SSepherosa Ziehau { 920ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 921ae813fd8SSepherosa Ziehau struct nfe_rx_ring *ring = &sc->rxq; 922ae813fd8SSepherosa Ziehau int reap; 9231bf7e051SSepherosa Ziehau #ifdef ETHER_INPUT_CHAIN 9241bf7e051SSepherosa Ziehau struct mbuf_chain chain[MAXCPU]; 9251bf7e051SSepherosa Ziehau #endif 926ae813fd8SSepherosa Ziehau 927ae813fd8SSepherosa Ziehau reap = 0; 928ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->tag, ring->map, BUS_DMASYNC_POSTREAD); 929ae813fd8SSepherosa Ziehau 9301bf7e051SSepherosa Ziehau #ifdef ETHER_INPUT_CHAIN 9311bf7e051SSepherosa Ziehau ether_input_chain_init(chain); 9321bf7e051SSepherosa Ziehau #endif 9331bf7e051SSepherosa Ziehau 934ae813fd8SSepherosa Ziehau for (;;) { 935ae813fd8SSepherosa Ziehau struct nfe_rx_data *data = &ring->data[ring->cur]; 936ae813fd8SSepherosa Ziehau struct mbuf *m; 937ae813fd8SSepherosa Ziehau uint16_t flags; 938ae813fd8SSepherosa Ziehau int len, error; 939ae813fd8SSepherosa Ziehau 940ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) { 941ae813fd8SSepherosa Ziehau struct nfe_desc64 *desc64 = &ring->desc64[ring->cur]; 942ae813fd8SSepherosa Ziehau 943ae813fd8SSepherosa Ziehau flags = le16toh(desc64->flags); 944ae813fd8SSepherosa Ziehau len = le16toh(desc64->length) & 0x3fff; 945ae813fd8SSepherosa Ziehau } else { 946ae813fd8SSepherosa Ziehau struct nfe_desc32 *desc32 = &ring->desc32[ring->cur]; 947ae813fd8SSepherosa Ziehau 948ae813fd8SSepherosa Ziehau flags = le16toh(desc32->flags); 949ae813fd8SSepherosa Ziehau len = le16toh(desc32->length) & 0x3fff; 950ae813fd8SSepherosa Ziehau } 951ae813fd8SSepherosa Ziehau 952ae813fd8SSepherosa Ziehau if (flags & NFE_RX_READY) 953ae813fd8SSepherosa Ziehau break; 954ae813fd8SSepherosa Ziehau 955ae813fd8SSepherosa Ziehau reap = 1; 956ae813fd8SSepherosa Ziehau 957ae813fd8SSepherosa Ziehau if ((sc->sc_flags & (NFE_JUMBO_SUP | NFE_40BIT_ADDR)) == 0) { 958ae813fd8SSepherosa Ziehau if (!(flags & NFE_RX_VALID_V1)) 959ae813fd8SSepherosa Ziehau goto skip; 960ae813fd8SSepherosa Ziehau 961ae813fd8SSepherosa Ziehau if ((flags & NFE_RX_FIXME_V1) == NFE_RX_FIXME_V1) { 962ae813fd8SSepherosa Ziehau flags &= ~NFE_RX_ERROR; 963ae813fd8SSepherosa Ziehau len--; /* fix buffer length */ 964ae813fd8SSepherosa Ziehau } 965ae813fd8SSepherosa Ziehau } else { 966ae813fd8SSepherosa Ziehau if (!(flags & NFE_RX_VALID_V2)) 967ae813fd8SSepherosa Ziehau goto skip; 968ae813fd8SSepherosa Ziehau 969ae813fd8SSepherosa Ziehau if ((flags & NFE_RX_FIXME_V2) == NFE_RX_FIXME_V2) { 970ae813fd8SSepherosa Ziehau flags &= ~NFE_RX_ERROR; 971ae813fd8SSepherosa Ziehau len--; /* fix buffer length */ 972ae813fd8SSepherosa Ziehau } 973ae813fd8SSepherosa Ziehau } 974ae813fd8SSepherosa Ziehau 975ae813fd8SSepherosa Ziehau if (flags & NFE_RX_ERROR) { 976ae813fd8SSepherosa Ziehau ifp->if_ierrors++; 977ae813fd8SSepherosa Ziehau goto skip; 978ae813fd8SSepherosa Ziehau } 979ae813fd8SSepherosa Ziehau 980ae813fd8SSepherosa Ziehau m = data->m; 981ae813fd8SSepherosa Ziehau 982ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_USE_JUMBO) 983ae813fd8SSepherosa Ziehau error = nfe_newbuf_jumbo(sc, ring, ring->cur, 0); 984ae813fd8SSepherosa Ziehau else 985ae813fd8SSepherosa Ziehau error = nfe_newbuf_std(sc, ring, ring->cur, 0); 986ae813fd8SSepherosa Ziehau if (error) { 987ae813fd8SSepherosa Ziehau ifp->if_ierrors++; 988ae813fd8SSepherosa Ziehau goto skip; 989ae813fd8SSepherosa Ziehau } 990ae813fd8SSepherosa Ziehau 991ae813fd8SSepherosa Ziehau /* finalize mbuf */ 992ae813fd8SSepherosa Ziehau m->m_pkthdr.len = m->m_len = len; 993ae813fd8SSepherosa Ziehau m->m_pkthdr.rcvif = ifp; 994ae813fd8SSepherosa Ziehau 995bf2a5992SSepherosa Ziehau if ((ifp->if_capenable & IFCAP_RXCSUM) && 99611db6c57SSepherosa Ziehau (flags & NFE_RX_CSUMOK)) { 9978b712a27SSepherosa Ziehau if (flags & NFE_RX_IP_CSUMOK_V2) { 9988b712a27SSepherosa Ziehau m->m_pkthdr.csum_flags |= CSUM_IP_CHECKED | 9998b712a27SSepherosa Ziehau CSUM_IP_VALID; 10008b712a27SSepherosa Ziehau } 100111db6c57SSepherosa Ziehau 100211db6c57SSepherosa Ziehau if (flags & 100311db6c57SSepherosa Ziehau (NFE_RX_UDP_CSUMOK_V2 | NFE_RX_TCP_CSUMOK_V2)) { 100411db6c57SSepherosa Ziehau m->m_pkthdr.csum_flags |= CSUM_DATA_VALID | 1005fbb35ef0SSepherosa Ziehau CSUM_PSEUDO_HDR | 1006fbb35ef0SSepherosa Ziehau CSUM_FRAG_NOT_CHECKED; 100711db6c57SSepherosa Ziehau m->m_pkthdr.csum_data = 0xffff; 1008ae813fd8SSepherosa Ziehau } 100911db6c57SSepherosa Ziehau } 1010ae813fd8SSepherosa Ziehau 1011ae813fd8SSepherosa Ziehau ifp->if_ipackets++; 10121bf7e051SSepherosa Ziehau #ifdef ETHER_INPUT_CHAIN 10131bf7e051SSepherosa Ziehau #ifdef ETHER_INPUT2 10141bf7e051SSepherosa Ziehau ether_input_chain2(ifp, m, chain); 10151bf7e051SSepherosa Ziehau #else 10161bf7e051SSepherosa Ziehau ether_input_chain(ifp, m, chain); 10171bf7e051SSepherosa Ziehau #endif 10181bf7e051SSepherosa Ziehau #else 1019ae813fd8SSepherosa Ziehau ifp->if_input(ifp, m); 10201bf7e051SSepherosa Ziehau #endif 1021ae813fd8SSepherosa Ziehau skip: 1022ae813fd8SSepherosa Ziehau nfe_set_ready_rxdesc(sc, ring, ring->cur); 1023ec9403d0SSepherosa Ziehau sc->rxq.cur = (sc->rxq.cur + 1) % sc->sc_rx_ring_count; 1024ae813fd8SSepherosa Ziehau } 1025ae813fd8SSepherosa Ziehau 10261bf7e051SSepherosa Ziehau if (reap) { 1027ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->tag, ring->map, BUS_DMASYNC_PREWRITE); 10281bf7e051SSepherosa Ziehau #ifdef ETHER_INPUT_CHAIN 10291bf7e051SSepherosa Ziehau ether_input_dispatch(chain); 10301bf7e051SSepherosa Ziehau #endif 10311bf7e051SSepherosa Ziehau } 1032ae813fd8SSepherosa Ziehau } 1033ae813fd8SSepherosa Ziehau 1034ae813fd8SSepherosa Ziehau static void 1035ae813fd8SSepherosa Ziehau nfe_txeof(struct nfe_softc *sc) 1036ae813fd8SSepherosa Ziehau { 1037ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 1038ae813fd8SSepherosa Ziehau struct nfe_tx_ring *ring = &sc->txq; 1039ae813fd8SSepherosa Ziehau struct nfe_tx_data *data = NULL; 1040ae813fd8SSepherosa Ziehau 1041ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->tag, ring->map, BUS_DMASYNC_POSTREAD); 1042ae813fd8SSepherosa Ziehau while (ring->next != ring->cur) { 1043ae813fd8SSepherosa Ziehau uint16_t flags; 1044ae813fd8SSepherosa Ziehau 1045ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) 1046ae813fd8SSepherosa Ziehau flags = le16toh(ring->desc64[ring->next].flags); 1047ae813fd8SSepherosa Ziehau else 1048ae813fd8SSepherosa Ziehau flags = le16toh(ring->desc32[ring->next].flags); 1049ae813fd8SSepherosa Ziehau 1050ae813fd8SSepherosa Ziehau if (flags & NFE_TX_VALID) 1051ae813fd8SSepherosa Ziehau break; 1052ae813fd8SSepherosa Ziehau 1053ae813fd8SSepherosa Ziehau data = &ring->data[ring->next]; 1054ae813fd8SSepherosa Ziehau 1055ae813fd8SSepherosa Ziehau if ((sc->sc_flags & (NFE_JUMBO_SUP | NFE_40BIT_ADDR)) == 0) { 1056ae813fd8SSepherosa Ziehau if (!(flags & NFE_TX_LASTFRAG_V1) && data->m == NULL) 1057ae813fd8SSepherosa Ziehau goto skip; 1058ae813fd8SSepherosa Ziehau 1059ae813fd8SSepherosa Ziehau if ((flags & NFE_TX_ERROR_V1) != 0) { 1060ae813fd8SSepherosa Ziehau if_printf(ifp, "tx v1 error 0x%4b\n", flags, 1061ae813fd8SSepherosa Ziehau NFE_V1_TXERR); 1062ae813fd8SSepherosa Ziehau ifp->if_oerrors++; 1063ae813fd8SSepherosa Ziehau } else { 1064ae813fd8SSepherosa Ziehau ifp->if_opackets++; 1065ae813fd8SSepherosa Ziehau } 1066ae813fd8SSepherosa Ziehau } else { 1067ae813fd8SSepherosa Ziehau if (!(flags & NFE_TX_LASTFRAG_V2) && data->m == NULL) 1068ae813fd8SSepherosa Ziehau goto skip; 1069ae813fd8SSepherosa Ziehau 1070ae813fd8SSepherosa Ziehau if ((flags & NFE_TX_ERROR_V2) != 0) { 1071ae813fd8SSepherosa Ziehau if_printf(ifp, "tx v2 error 0x%4b\n", flags, 1072ae813fd8SSepherosa Ziehau NFE_V2_TXERR); 1073ae813fd8SSepherosa Ziehau ifp->if_oerrors++; 1074ae813fd8SSepherosa Ziehau } else { 1075ae813fd8SSepherosa Ziehau ifp->if_opackets++; 1076ae813fd8SSepherosa Ziehau } 1077ae813fd8SSepherosa Ziehau } 1078ae813fd8SSepherosa Ziehau 1079ae813fd8SSepherosa Ziehau if (data->m == NULL) { /* should not get there */ 1080ae813fd8SSepherosa Ziehau if_printf(ifp, 1081ae813fd8SSepherosa Ziehau "last fragment bit w/o associated mbuf!\n"); 1082ae813fd8SSepherosa Ziehau goto skip; 1083ae813fd8SSepherosa Ziehau } 1084ae813fd8SSepherosa Ziehau 1085ae813fd8SSepherosa Ziehau /* last fragment of the mbuf chain transmitted */ 1086ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->data_tag, data->map, 1087ae813fd8SSepherosa Ziehau BUS_DMASYNC_POSTWRITE); 1088ae813fd8SSepherosa Ziehau bus_dmamap_unload(ring->data_tag, data->map); 1089ae813fd8SSepherosa Ziehau m_freem(data->m); 1090ae813fd8SSepherosa Ziehau data->m = NULL; 1091ae813fd8SSepherosa Ziehau 1092ae813fd8SSepherosa Ziehau ifp->if_timer = 0; 1093ae813fd8SSepherosa Ziehau skip: 1094ae813fd8SSepherosa Ziehau ring->queued--; 1095ae813fd8SSepherosa Ziehau KKASSERT(ring->queued >= 0); 1096ae813fd8SSepherosa Ziehau ring->next = (ring->next + 1) % NFE_TX_RING_COUNT; 1097ae813fd8SSepherosa Ziehau } 1098ae813fd8SSepherosa Ziehau 1099ae813fd8SSepherosa Ziehau if (data != NULL) { /* at least one slot freed */ 1100ae813fd8SSepherosa Ziehau ifp->if_flags &= ~IFF_OACTIVE; 11019db4b353SSepherosa Ziehau if_devstart(ifp); 1102ae813fd8SSepherosa Ziehau } 1103ae813fd8SSepherosa Ziehau } 1104ae813fd8SSepherosa Ziehau 1105ae813fd8SSepherosa Ziehau static int 1106ae813fd8SSepherosa Ziehau nfe_encap(struct nfe_softc *sc, struct nfe_tx_ring *ring, struct mbuf *m0) 1107ae813fd8SSepherosa Ziehau { 1108ae813fd8SSepherosa Ziehau struct nfe_dma_ctx ctx; 1109ae813fd8SSepherosa Ziehau bus_dma_segment_t segs[NFE_MAX_SCATTER]; 1110ae813fd8SSepherosa Ziehau struct nfe_tx_data *data, *data_map; 1111ae813fd8SSepherosa Ziehau bus_dmamap_t map; 1112ae813fd8SSepherosa Ziehau struct nfe_desc64 *desc64 = NULL; 1113ae813fd8SSepherosa Ziehau struct nfe_desc32 *desc32 = NULL; 1114ae813fd8SSepherosa Ziehau uint16_t flags = 0; 1115ae813fd8SSepherosa Ziehau uint32_t vtag = 0; 1116ae813fd8SSepherosa Ziehau int error, i, j; 1117ae813fd8SSepherosa Ziehau 1118ae813fd8SSepherosa Ziehau data = &ring->data[ring->cur]; 1119ae813fd8SSepherosa Ziehau map = data->map; 1120ae813fd8SSepherosa Ziehau data_map = data; /* Remember who owns the DMA map */ 1121ae813fd8SSepherosa Ziehau 1122ae813fd8SSepherosa Ziehau ctx.nsegs = NFE_MAX_SCATTER; 1123ae813fd8SSepherosa Ziehau ctx.segs = segs; 1124ae813fd8SSepherosa Ziehau error = bus_dmamap_load_mbuf(ring->data_tag, map, m0, 1125ae813fd8SSepherosa Ziehau nfe_buf_dma_addr, &ctx, BUS_DMA_NOWAIT); 1126ae813fd8SSepherosa Ziehau if (error && error != EFBIG) { 1127ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, "could not map TX mbuf\n"); 1128ae813fd8SSepherosa Ziehau goto back; 1129ae813fd8SSepherosa Ziehau } 1130ae813fd8SSepherosa Ziehau 1131ae813fd8SSepherosa Ziehau if (error) { /* error == EFBIG */ 1132ae813fd8SSepherosa Ziehau struct mbuf *m_new; 1133ae813fd8SSepherosa Ziehau 1134ae813fd8SSepherosa Ziehau m_new = m_defrag(m0, MB_DONTWAIT); 1135ae813fd8SSepherosa Ziehau if (m_new == NULL) { 1136ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1137ae813fd8SSepherosa Ziehau "could not defrag TX mbuf\n"); 1138ae813fd8SSepherosa Ziehau error = ENOBUFS; 1139ae813fd8SSepherosa Ziehau goto back; 1140ae813fd8SSepherosa Ziehau } else { 1141ae813fd8SSepherosa Ziehau m0 = m_new; 1142ae813fd8SSepherosa Ziehau } 1143ae813fd8SSepherosa Ziehau 1144ae813fd8SSepherosa Ziehau ctx.nsegs = NFE_MAX_SCATTER; 1145ae813fd8SSepherosa Ziehau ctx.segs = segs; 1146ae813fd8SSepherosa Ziehau error = bus_dmamap_load_mbuf(ring->data_tag, map, m0, 1147ae813fd8SSepherosa Ziehau nfe_buf_dma_addr, &ctx, 1148ae813fd8SSepherosa Ziehau BUS_DMA_NOWAIT); 1149ae813fd8SSepherosa Ziehau if (error) { 1150ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1151ae813fd8SSepherosa Ziehau "could not map defraged TX mbuf\n"); 1152ae813fd8SSepherosa Ziehau goto back; 1153ae813fd8SSepherosa Ziehau } 1154ae813fd8SSepherosa Ziehau } 1155ae813fd8SSepherosa Ziehau 1156ae813fd8SSepherosa Ziehau error = 0; 1157ae813fd8SSepherosa Ziehau 1158ae813fd8SSepherosa Ziehau if (ring->queued + ctx.nsegs >= NFE_TX_RING_COUNT - 1) { 1159ae813fd8SSepherosa Ziehau bus_dmamap_unload(ring->data_tag, map); 1160ae813fd8SSepherosa Ziehau error = ENOBUFS; 1161ae813fd8SSepherosa Ziehau goto back; 1162ae813fd8SSepherosa Ziehau } 1163ae813fd8SSepherosa Ziehau 1164ae813fd8SSepherosa Ziehau /* setup h/w VLAN tagging */ 116583790f85SSepherosa Ziehau if (m0->m_flags & M_VLANTAG) 116683790f85SSepherosa Ziehau vtag = m0->m_pkthdr.ether_vlantag; 1167ae813fd8SSepherosa Ziehau 1168bf2a5992SSepherosa Ziehau if (sc->arpcom.ac_if.if_capenable & IFCAP_TXCSUM) { 116911db6c57SSepherosa Ziehau if (m0->m_pkthdr.csum_flags & CSUM_IP) 1170ae813fd8SSepherosa Ziehau flags |= NFE_TX_IP_CSUM; 117111db6c57SSepherosa Ziehau if (m0->m_pkthdr.csum_flags & (CSUM_TCP | CSUM_UDP)) 1172ae813fd8SSepherosa Ziehau flags |= NFE_TX_TCP_CSUM; 117311db6c57SSepherosa Ziehau } 1174ae813fd8SSepherosa Ziehau 1175ae813fd8SSepherosa Ziehau /* 1176ae813fd8SSepherosa Ziehau * XXX urm. somebody is unaware of how hardware works. You 1177ae813fd8SSepherosa Ziehau * absolutely CANNOT set NFE_TX_VALID on the next descriptor in 1178ae813fd8SSepherosa Ziehau * the ring until the entire chain is actually *VALID*. Otherwise 1179ae813fd8SSepherosa Ziehau * the hardware may encounter a partially initialized chain that 1180ae813fd8SSepherosa Ziehau * is marked as being ready to go when it in fact is not ready to 1181ae813fd8SSepherosa Ziehau * go. 1182ae813fd8SSepherosa Ziehau */ 1183ae813fd8SSepherosa Ziehau 1184ae813fd8SSepherosa Ziehau for (i = 0; i < ctx.nsegs; i++) { 1185ae813fd8SSepherosa Ziehau j = (ring->cur + i) % NFE_TX_RING_COUNT; 1186ae813fd8SSepherosa Ziehau data = &ring->data[j]; 1187ae813fd8SSepherosa Ziehau 1188ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) { 1189ae813fd8SSepherosa Ziehau desc64 = &ring->desc64[j]; 1190ae813fd8SSepherosa Ziehau #if defined(__LP64__) 1191ae813fd8SSepherosa Ziehau desc64->physaddr[0] = 1192ae813fd8SSepherosa Ziehau htole32(segs[i].ds_addr >> 32); 1193ae813fd8SSepherosa Ziehau #endif 1194ae813fd8SSepherosa Ziehau desc64->physaddr[1] = 1195ae813fd8SSepherosa Ziehau htole32(segs[i].ds_addr & 0xffffffff); 1196ae813fd8SSepherosa Ziehau desc64->length = htole16(segs[i].ds_len - 1); 1197ae813fd8SSepherosa Ziehau desc64->vtag = htole32(vtag); 1198ae813fd8SSepherosa Ziehau desc64->flags = htole16(flags); 1199ae813fd8SSepherosa Ziehau } else { 1200ae813fd8SSepherosa Ziehau desc32 = &ring->desc32[j]; 1201ae813fd8SSepherosa Ziehau desc32->physaddr = htole32(segs[i].ds_addr); 1202ae813fd8SSepherosa Ziehau desc32->length = htole16(segs[i].ds_len - 1); 1203ae813fd8SSepherosa Ziehau desc32->flags = htole16(flags); 1204ae813fd8SSepherosa Ziehau } 1205ae813fd8SSepherosa Ziehau 1206ae813fd8SSepherosa Ziehau /* csum flags and vtag belong to the first fragment only */ 1207ae813fd8SSepherosa Ziehau flags &= ~(NFE_TX_IP_CSUM | NFE_TX_TCP_CSUM); 1208ae813fd8SSepherosa Ziehau vtag = 0; 1209ae813fd8SSepherosa Ziehau 1210ae813fd8SSepherosa Ziehau ring->queued++; 1211ae813fd8SSepherosa Ziehau KKASSERT(ring->queued <= NFE_TX_RING_COUNT); 1212ae813fd8SSepherosa Ziehau } 1213ae813fd8SSepherosa Ziehau 1214ae813fd8SSepherosa Ziehau /* the whole mbuf chain has been DMA mapped, fix last descriptor */ 1215ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) { 1216ae813fd8SSepherosa Ziehau desc64->flags |= htole16(NFE_TX_LASTFRAG_V2); 1217ae813fd8SSepherosa Ziehau } else { 1218ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_JUMBO_SUP) 1219ae813fd8SSepherosa Ziehau flags = NFE_TX_LASTFRAG_V2; 1220ae813fd8SSepherosa Ziehau else 1221ae813fd8SSepherosa Ziehau flags = NFE_TX_LASTFRAG_V1; 1222ae813fd8SSepherosa Ziehau desc32->flags |= htole16(flags); 1223ae813fd8SSepherosa Ziehau } 1224ae813fd8SSepherosa Ziehau 1225ae813fd8SSepherosa Ziehau /* 1226ae813fd8SSepherosa Ziehau * Set NFE_TX_VALID backwards so the hardware doesn't see the 1227ae813fd8SSepherosa Ziehau * whole mess until the first descriptor in the map is flagged. 1228ae813fd8SSepherosa Ziehau */ 1229ae813fd8SSepherosa Ziehau for (i = ctx.nsegs - 1; i >= 0; --i) { 1230ae813fd8SSepherosa Ziehau j = (ring->cur + i) % NFE_TX_RING_COUNT; 1231ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) { 1232ae813fd8SSepherosa Ziehau desc64 = &ring->desc64[j]; 1233ae813fd8SSepherosa Ziehau desc64->flags |= htole16(NFE_TX_VALID); 1234ae813fd8SSepherosa Ziehau } else { 1235ae813fd8SSepherosa Ziehau desc32 = &ring->desc32[j]; 1236ae813fd8SSepherosa Ziehau desc32->flags |= htole16(NFE_TX_VALID); 1237ae813fd8SSepherosa Ziehau } 1238ae813fd8SSepherosa Ziehau } 1239ae813fd8SSepherosa Ziehau ring->cur = (ring->cur + ctx.nsegs) % NFE_TX_RING_COUNT; 1240ae813fd8SSepherosa Ziehau 1241ae813fd8SSepherosa Ziehau /* Exchange DMA map */ 1242ae813fd8SSepherosa Ziehau data_map->map = data->map; 1243ae813fd8SSepherosa Ziehau data->map = map; 1244ae813fd8SSepherosa Ziehau data->m = m0; 1245ae813fd8SSepherosa Ziehau 1246ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->data_tag, map, BUS_DMASYNC_PREWRITE); 1247ae813fd8SSepherosa Ziehau back: 1248ae813fd8SSepherosa Ziehau if (error) 1249ae813fd8SSepherosa Ziehau m_freem(m0); 1250ae813fd8SSepherosa Ziehau return error; 1251ae813fd8SSepherosa Ziehau } 1252ae813fd8SSepherosa Ziehau 1253ae813fd8SSepherosa Ziehau static void 1254ae813fd8SSepherosa Ziehau nfe_start(struct ifnet *ifp) 1255ae813fd8SSepherosa Ziehau { 1256ae813fd8SSepherosa Ziehau struct nfe_softc *sc = ifp->if_softc; 1257ae813fd8SSepherosa Ziehau struct nfe_tx_ring *ring = &sc->txq; 1258ae813fd8SSepherosa Ziehau int count = 0; 1259ae813fd8SSepherosa Ziehau struct mbuf *m0; 1260ae813fd8SSepherosa Ziehau 12619db4b353SSepherosa Ziehau if ((ifp->if_flags & (IFF_OACTIVE | IFF_RUNNING)) != IFF_RUNNING) 1262ae813fd8SSepherosa Ziehau return; 1263ae813fd8SSepherosa Ziehau 1264ae813fd8SSepherosa Ziehau for (;;) { 1265ae813fd8SSepherosa Ziehau m0 = ifq_dequeue(&ifp->if_snd, NULL); 1266ae813fd8SSepherosa Ziehau if (m0 == NULL) 1267ae813fd8SSepherosa Ziehau break; 1268ae813fd8SSepherosa Ziehau 1269b637f170SSepherosa Ziehau ETHER_BPF_MTAP(ifp, m0); 1270ae813fd8SSepherosa Ziehau 1271ae813fd8SSepherosa Ziehau if (nfe_encap(sc, ring, m0) != 0) { 1272ae813fd8SSepherosa Ziehau ifp->if_flags |= IFF_OACTIVE; 1273ae813fd8SSepherosa Ziehau break; 1274ae813fd8SSepherosa Ziehau } 1275ae813fd8SSepherosa Ziehau ++count; 1276ae813fd8SSepherosa Ziehau 1277ae813fd8SSepherosa Ziehau /* 1278ae813fd8SSepherosa Ziehau * NOTE: 1279ae813fd8SSepherosa Ziehau * `m0' may be freed in nfe_encap(), so 1280ae813fd8SSepherosa Ziehau * it should not be touched any more. 1281ae813fd8SSepherosa Ziehau */ 1282ae813fd8SSepherosa Ziehau } 1283ae813fd8SSepherosa Ziehau if (count == 0) /* nothing sent */ 1284ae813fd8SSepherosa Ziehau return; 1285ae813fd8SSepherosa Ziehau 1286ae813fd8SSepherosa Ziehau /* Sync TX descriptor ring */ 1287ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->tag, ring->map, BUS_DMASYNC_PREWRITE); 1288ae813fd8SSepherosa Ziehau 1289ae813fd8SSepherosa Ziehau /* Kick Tx */ 1290ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RXTX_CTL, NFE_RXTX_KICKTX | sc->rxtxctl); 1291ae813fd8SSepherosa Ziehau 1292ae813fd8SSepherosa Ziehau /* 1293ae813fd8SSepherosa Ziehau * Set a timeout in case the chip goes out to lunch. 1294ae813fd8SSepherosa Ziehau */ 1295ae813fd8SSepherosa Ziehau ifp->if_timer = 5; 1296ae813fd8SSepherosa Ziehau } 1297ae813fd8SSepherosa Ziehau 1298ae813fd8SSepherosa Ziehau static void 1299ae813fd8SSepherosa Ziehau nfe_watchdog(struct ifnet *ifp) 1300ae813fd8SSepherosa Ziehau { 1301ae813fd8SSepherosa Ziehau struct nfe_softc *sc = ifp->if_softc; 1302ae813fd8SSepherosa Ziehau 1303ae813fd8SSepherosa Ziehau if (ifp->if_flags & IFF_RUNNING) { 1304ae813fd8SSepherosa Ziehau if_printf(ifp, "watchdog timeout - lost interrupt recovered\n"); 1305ae813fd8SSepherosa Ziehau nfe_txeof(sc); 1306ae813fd8SSepherosa Ziehau return; 1307ae813fd8SSepherosa Ziehau } 1308ae813fd8SSepherosa Ziehau 1309ae813fd8SSepherosa Ziehau if_printf(ifp, "watchdog timeout\n"); 1310ae813fd8SSepherosa Ziehau 1311ae813fd8SSepherosa Ziehau nfe_init(ifp->if_softc); 1312ae813fd8SSepherosa Ziehau 1313ae813fd8SSepherosa Ziehau ifp->if_oerrors++; 1314ae813fd8SSepherosa Ziehau } 1315ae813fd8SSepherosa Ziehau 1316ae813fd8SSepherosa Ziehau static void 1317ae813fd8SSepherosa Ziehau nfe_init(void *xsc) 1318ae813fd8SSepherosa Ziehau { 1319ae813fd8SSepherosa Ziehau struct nfe_softc *sc = xsc; 1320ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 1321ae813fd8SSepherosa Ziehau uint32_t tmp; 1322ae813fd8SSepherosa Ziehau int error; 1323ae813fd8SSepherosa Ziehau 1324ae813fd8SSepherosa Ziehau nfe_stop(sc); 1325ae813fd8SSepherosa Ziehau 1326a455c52eSSepherosa Ziehau /* 1327a455c52eSSepherosa Ziehau * NOTE: 1328a455c52eSSepherosa Ziehau * Switching between jumbo frames and normal frames should 1329a455c52eSSepherosa Ziehau * be done _after_ nfe_stop() but _before_ nfe_init_rx_ring(). 1330a455c52eSSepherosa Ziehau */ 1331a455c52eSSepherosa Ziehau if (ifp->if_mtu > ETHERMTU) { 1332a455c52eSSepherosa Ziehau sc->sc_flags |= NFE_USE_JUMBO; 1333a455c52eSSepherosa Ziehau sc->rxq.bufsz = NFE_JBYTES; 1334a455c52eSSepherosa Ziehau if (bootverbose) 1335a455c52eSSepherosa Ziehau if_printf(ifp, "use jumbo frames\n"); 1336a455c52eSSepherosa Ziehau } else { 1337a455c52eSSepherosa Ziehau sc->sc_flags &= ~NFE_USE_JUMBO; 1338a455c52eSSepherosa Ziehau sc->rxq.bufsz = MCLBYTES; 1339a455c52eSSepherosa Ziehau if (bootverbose) 1340a455c52eSSepherosa Ziehau if_printf(ifp, "use non-jumbo frames\n"); 1341a455c52eSSepherosa Ziehau } 1342a455c52eSSepherosa Ziehau 1343ae813fd8SSepherosa Ziehau error = nfe_init_tx_ring(sc, &sc->txq); 1344ae813fd8SSepherosa Ziehau if (error) { 1345ae813fd8SSepherosa Ziehau nfe_stop(sc); 1346ae813fd8SSepherosa Ziehau return; 1347ae813fd8SSepherosa Ziehau } 1348ae813fd8SSepherosa Ziehau 1349ae813fd8SSepherosa Ziehau error = nfe_init_rx_ring(sc, &sc->rxq); 1350ae813fd8SSepherosa Ziehau if (error) { 1351ae813fd8SSepherosa Ziehau nfe_stop(sc); 1352ae813fd8SSepherosa Ziehau return; 1353ae813fd8SSepherosa Ziehau } 1354ae813fd8SSepherosa Ziehau 1355ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_TX_UNK, 0); 1356ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_STATUS, 0); 1357ae813fd8SSepherosa Ziehau 1358ae813fd8SSepherosa Ziehau sc->rxtxctl = NFE_RXTX_BIT2; 1359ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) 1360ae813fd8SSepherosa Ziehau sc->rxtxctl |= NFE_RXTX_V3MAGIC; 1361ae813fd8SSepherosa Ziehau else if (sc->sc_flags & NFE_JUMBO_SUP) 1362ae813fd8SSepherosa Ziehau sc->rxtxctl |= NFE_RXTX_V2MAGIC; 136311db6c57SSepherosa Ziehau 1364bf2a5992SSepherosa Ziehau if (ifp->if_capenable & IFCAP_RXCSUM) 1365ae813fd8SSepherosa Ziehau sc->rxtxctl |= NFE_RXTX_RXCSUM; 1366ae813fd8SSepherosa Ziehau 1367ae813fd8SSepherosa Ziehau /* 1368ae813fd8SSepherosa Ziehau * Although the adapter is capable of stripping VLAN tags from received 1369ae813fd8SSepherosa Ziehau * frames (NFE_RXTX_VTAG_STRIP), we do not enable this functionality on 1370ae813fd8SSepherosa Ziehau * purpose. This will be done in software by our network stack. 1371ae813fd8SSepherosa Ziehau */ 1372ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_HW_VLAN) 1373ae813fd8SSepherosa Ziehau sc->rxtxctl |= NFE_RXTX_VTAG_INSERT; 1374ae813fd8SSepherosa Ziehau 1375ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RXTX_CTL, NFE_RXTX_RESET | sc->rxtxctl); 1376ae813fd8SSepherosa Ziehau DELAY(10); 1377ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RXTX_CTL, sc->rxtxctl); 1378ae813fd8SSepherosa Ziehau 1379ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_HW_VLAN) 1380ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_VTAG_CTL, NFE_VTAG_ENABLE); 1381ae813fd8SSepherosa Ziehau 1382ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_SETUP_R6, 0); 1383ae813fd8SSepherosa Ziehau 1384ae813fd8SSepherosa Ziehau /* set MAC address */ 1385ae813fd8SSepherosa Ziehau nfe_set_macaddr(sc, sc->arpcom.ac_enaddr); 1386ae813fd8SSepherosa Ziehau 1387ae813fd8SSepherosa Ziehau /* tell MAC where rings are in memory */ 1388ae813fd8SSepherosa Ziehau #ifdef __LP64__ 1389ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RX_RING_ADDR_HI, sc->rxq.physaddr >> 32); 1390ae813fd8SSepherosa Ziehau #endif 1391ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RX_RING_ADDR_LO, sc->rxq.physaddr & 0xffffffff); 1392ae813fd8SSepherosa Ziehau #ifdef __LP64__ 1393ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_TX_RING_ADDR_HI, sc->txq.physaddr >> 32); 1394ae813fd8SSepherosa Ziehau #endif 1395ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_TX_RING_ADDR_LO, sc->txq.physaddr & 0xffffffff); 1396ae813fd8SSepherosa Ziehau 1397ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RING_SIZE, 1398ec9403d0SSepherosa Ziehau (sc->sc_rx_ring_count - 1) << 16 | 1399ae813fd8SSepherosa Ziehau (NFE_TX_RING_COUNT - 1)); 1400ae813fd8SSepherosa Ziehau 1401ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RXBUFSZ, sc->rxq.bufsz); 1402ae813fd8SSepherosa Ziehau 1403ae813fd8SSepherosa Ziehau /* force MAC to wakeup */ 1404ae813fd8SSepherosa Ziehau tmp = NFE_READ(sc, NFE_PWR_STATE); 1405ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PWR_STATE, tmp | NFE_PWR_WAKEUP); 1406ae813fd8SSepherosa Ziehau DELAY(10); 1407ae813fd8SSepherosa Ziehau tmp = NFE_READ(sc, NFE_PWR_STATE); 1408ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PWR_STATE, tmp | NFE_PWR_VALID); 1409ae813fd8SSepherosa Ziehau 14106362c2faSMatthew Dillon /* 14116362c2faSMatthew Dillon * NFE_IMTIMER generates a periodic interrupt via NFE_IRQ_TIMER. 14126362c2faSMatthew Dillon * It is unclear how wide the timer is. Base programming does 14136362c2faSMatthew Dillon * not seem to effect NFE_IRQ_TX_DONE or NFE_IRQ_RX_DONE so 14146362c2faSMatthew Dillon * we don't get any interrupt moderation. TX moderation is 14156362c2faSMatthew Dillon * possible by using the timer interrupt instead of TX_DONE. 14166362c2faSMatthew Dillon * 14176362c2faSMatthew Dillon * It is unclear whether there are other bits that can be 14186362c2faSMatthew Dillon * set to make the NFE device actually do interrupt moderation 14196362c2faSMatthew Dillon * on the RX side. 14206362c2faSMatthew Dillon * 14216362c2faSMatthew Dillon * For now set a 128uS interval as a placemark, but don't use 14226362c2faSMatthew Dillon * the timer. 14236362c2faSMatthew Dillon */ 1424ec9403d0SSepherosa Ziehau if (sc->sc_imtime < 0) 1425ec9403d0SSepherosa Ziehau NFE_WRITE(sc, NFE_IMTIMER, NFE_IMTIME_DEFAULT); 1426ec9403d0SSepherosa Ziehau else 1427ec9403d0SSepherosa Ziehau NFE_WRITE(sc, NFE_IMTIMER, NFE_IMTIME(sc->sc_imtime)); 1428ae813fd8SSepherosa Ziehau 1429ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_SETUP_R1, NFE_R1_MAGIC); 1430ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_SETUP_R2, NFE_R2_MAGIC); 1431ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_SETUP_R6, NFE_R6_MAGIC); 1432ae813fd8SSepherosa Ziehau 1433ae813fd8SSepherosa Ziehau /* update MAC knowledge of PHY; generates a NFE_IRQ_LINK interrupt */ 1434ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_STATUS, sc->mii_phyaddr << 24 | NFE_STATUS_MAGIC); 1435ae813fd8SSepherosa Ziehau 1436ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_SETUP_R4, NFE_R4_MAGIC); 1437ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_WOL_CTL, NFE_WOL_MAGIC); 1438ae813fd8SSepherosa Ziehau 1439ae813fd8SSepherosa Ziehau sc->rxtxctl &= ~NFE_RXTX_BIT2; 1440ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RXTX_CTL, sc->rxtxctl); 1441ae813fd8SSepherosa Ziehau DELAY(10); 1442ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RXTX_CTL, NFE_RXTX_BIT1 | sc->rxtxctl); 1443ae813fd8SSepherosa Ziehau 1444ae813fd8SSepherosa Ziehau /* set Rx filter */ 1445ae813fd8SSepherosa Ziehau nfe_setmulti(sc); 1446ae813fd8SSepherosa Ziehau 1447ae813fd8SSepherosa Ziehau nfe_ifmedia_upd(ifp); 1448ae813fd8SSepherosa Ziehau 1449ae813fd8SSepherosa Ziehau /* enable Rx */ 1450ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RX_CTL, NFE_RX_START); 1451ae813fd8SSepherosa Ziehau 1452ae813fd8SSepherosa Ziehau /* enable Tx */ 1453ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_TX_CTL, NFE_TX_START); 1454ae813fd8SSepherosa Ziehau 1455ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_PHY_STATUS, 0xf); 1456ae813fd8SSepherosa Ziehau 1457ae813fd8SSepherosa Ziehau #ifdef DEVICE_POLLING 1458ae813fd8SSepherosa Ziehau if ((ifp->if_flags & IFF_POLLING) == 0) 1459ae813fd8SSepherosa Ziehau #endif 1460ae813fd8SSepherosa Ziehau /* enable interrupts */ 1461ec9403d0SSepherosa Ziehau NFE_WRITE(sc, NFE_IRQ_MASK, sc->sc_irq_enable); 1462ae813fd8SSepherosa Ziehau 1463ae813fd8SSepherosa Ziehau callout_reset(&sc->sc_tick_ch, hz, nfe_tick, sc); 1464ae813fd8SSepherosa Ziehau 1465ae813fd8SSepherosa Ziehau ifp->if_flags |= IFF_RUNNING; 1466ae813fd8SSepherosa Ziehau ifp->if_flags &= ~IFF_OACTIVE; 1467751890abSMatthew Dillon 1468751890abSMatthew Dillon /* 1469751890abSMatthew Dillon * If we had stuff in the tx ring before its all cleaned out now 1470751890abSMatthew Dillon * so we are not going to get an interrupt, jump-start any pending 1471751890abSMatthew Dillon * output. 1472751890abSMatthew Dillon */ 14739db4b353SSepherosa Ziehau if_devstart(ifp); 1474ae813fd8SSepherosa Ziehau } 1475ae813fd8SSepherosa Ziehau 1476ae813fd8SSepherosa Ziehau static void 1477ae813fd8SSepherosa Ziehau nfe_stop(struct nfe_softc *sc) 1478ae813fd8SSepherosa Ziehau { 1479ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 1480ae813fd8SSepherosa Ziehau 1481ae813fd8SSepherosa Ziehau callout_stop(&sc->sc_tick_ch); 1482ae813fd8SSepherosa Ziehau 1483ae813fd8SSepherosa Ziehau ifp->if_timer = 0; 1484ae813fd8SSepherosa Ziehau ifp->if_flags &= ~(IFF_RUNNING | IFF_OACTIVE); 1485ae813fd8SSepherosa Ziehau 1486d1daf8afSMatthew Dillon /* 1487d1daf8afSMatthew Dillon * Are NFE_TX_CTL and NFE_RX_CTL polled by the chip microcontroller 1488d1daf8afSMatthew Dillon * or do they directly reset/terminate the DMA hardware? Nobody 1489d1daf8afSMatthew Dillon * knows. 1490d1daf8afSMatthew Dillon * 1491d1daf8afSMatthew Dillon * Add two delays: 1492d1daf8afSMatthew Dillon * 1493d1daf8afSMatthew Dillon * (1) Delay before zeroing out NFE_TX_CTL. This seems to help a 1494d1daf8afSMatthew Dillon * watchdog timeout that occurs after a stop/init sequence. I am 1495d1daf8afSMatthew Dillon * theorizing that a TX KICK occuring just prior to a reinit (e.g. 1496d1daf8afSMatthew Dillon * due to dhclient) is queueing an interrupt to the microcontroller 1497d1daf8afSMatthew Dillon * which gets delayed until after we clear the control registers 1498d1daf8afSMatthew Dillon * down below, resulting in mass confusion. TX KICK is clearly 1499d1daf8afSMatthew Dillon * hardware aided whereas the other bits in the control register 1500d1daf8afSMatthew Dillon * are more likely to be polled by the microcontroller. 1501d1daf8afSMatthew Dillon * 1502d1daf8afSMatthew Dillon * (2) Delay after zeroing out TX and RX CTL registers, under the 1503d1daf8afSMatthew Dillon * assumption that primary DMA is initiated and terminated by 1504d1daf8afSMatthew Dillon * the microcontroller and not hardware (and anyway, one can hardly 1505d1daf8afSMatthew Dillon * expect the DMA engine to just instantly stop!). We don't want 1506d1daf8afSMatthew Dillon * to rip the rings out from under it before it has had a chance to 1507d1daf8afSMatthew Dillon * actually stop! 1508d1daf8afSMatthew Dillon */ 1509d1daf8afSMatthew Dillon DELAY(1000); 1510d1daf8afSMatthew Dillon 1511ae813fd8SSepherosa Ziehau /* Abort Tx */ 1512ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_TX_CTL, 0); 1513ae813fd8SSepherosa Ziehau 1514ae813fd8SSepherosa Ziehau /* Disable Rx */ 1515ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RX_CTL, 0); 1516ae813fd8SSepherosa Ziehau 1517ae813fd8SSepherosa Ziehau /* Disable interrupts */ 1518ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_IRQ_MASK, 0); 1519ae813fd8SSepherosa Ziehau 1520d1daf8afSMatthew Dillon DELAY(1000); 1521d1daf8afSMatthew Dillon 1522ae813fd8SSepherosa Ziehau /* Reset Tx and Rx rings */ 1523ae813fd8SSepherosa Ziehau nfe_reset_tx_ring(sc, &sc->txq); 1524ae813fd8SSepherosa Ziehau nfe_reset_rx_ring(sc, &sc->rxq); 1525ae813fd8SSepherosa Ziehau } 1526ae813fd8SSepherosa Ziehau 1527ae813fd8SSepherosa Ziehau static int 1528ae813fd8SSepherosa Ziehau nfe_alloc_rx_ring(struct nfe_softc *sc, struct nfe_rx_ring *ring) 1529ae813fd8SSepherosa Ziehau { 1530ae813fd8SSepherosa Ziehau int i, j, error, descsize; 1531ae813fd8SSepherosa Ziehau void **desc; 1532ae813fd8SSepherosa Ziehau 1533ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) { 1534ae813fd8SSepherosa Ziehau desc = (void **)&ring->desc64; 1535ae813fd8SSepherosa Ziehau descsize = sizeof(struct nfe_desc64); 1536ae813fd8SSepherosa Ziehau } else { 1537ae813fd8SSepherosa Ziehau desc = (void **)&ring->desc32; 1538ae813fd8SSepherosa Ziehau descsize = sizeof(struct nfe_desc32); 1539ae813fd8SSepherosa Ziehau } 1540ae813fd8SSepherosa Ziehau 1541a455c52eSSepherosa Ziehau ring->jbuf = kmalloc(sizeof(struct nfe_jbuf) * NFE_JPOOL_COUNT, 1542a455c52eSSepherosa Ziehau M_DEVBUF, M_WAITOK | M_ZERO); 1543ec9403d0SSepherosa Ziehau ring->data = kmalloc(sizeof(struct nfe_rx_data) * sc->sc_rx_ring_count, 1544a455c52eSSepherosa Ziehau M_DEVBUF, M_WAITOK | M_ZERO); 1545a455c52eSSepherosa Ziehau 1546ae813fd8SSepherosa Ziehau ring->bufsz = MCLBYTES; 1547ae813fd8SSepherosa Ziehau ring->cur = ring->next = 0; 1548ae813fd8SSepherosa Ziehau 1549ae813fd8SSepherosa Ziehau error = bus_dma_tag_create(NULL, PAGE_SIZE, 0, 1550ae813fd8SSepherosa Ziehau BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, 1551ae813fd8SSepherosa Ziehau NULL, NULL, 1552ec9403d0SSepherosa Ziehau sc->sc_rx_ring_count * descsize, 1, 1553ec9403d0SSepherosa Ziehau sc->sc_rx_ring_count * descsize, 1554ae813fd8SSepherosa Ziehau 0, &ring->tag); 1555ae813fd8SSepherosa Ziehau if (error) { 1556ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1557ae813fd8SSepherosa Ziehau "could not create desc RX DMA tag\n"); 1558ae813fd8SSepherosa Ziehau return error; 1559ae813fd8SSepherosa Ziehau } 1560ae813fd8SSepherosa Ziehau 1561ae813fd8SSepherosa Ziehau error = bus_dmamem_alloc(ring->tag, desc, BUS_DMA_WAITOK | BUS_DMA_ZERO, 1562ae813fd8SSepherosa Ziehau &ring->map); 1563ae813fd8SSepherosa Ziehau if (error) { 1564ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1565ae813fd8SSepherosa Ziehau "could not allocate RX desc DMA memory\n"); 1566ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->tag); 1567ae813fd8SSepherosa Ziehau ring->tag = NULL; 1568ae813fd8SSepherosa Ziehau return error; 1569ae813fd8SSepherosa Ziehau } 1570ae813fd8SSepherosa Ziehau 1571ae813fd8SSepherosa Ziehau error = bus_dmamap_load(ring->tag, ring->map, *desc, 1572ec9403d0SSepherosa Ziehau sc->sc_rx_ring_count * descsize, 1573ae813fd8SSepherosa Ziehau nfe_ring_dma_addr, &ring->physaddr, 1574ae813fd8SSepherosa Ziehau BUS_DMA_WAITOK); 1575ae813fd8SSepherosa Ziehau if (error) { 1576ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1577ae813fd8SSepherosa Ziehau "could not load RX desc DMA map\n"); 1578ae813fd8SSepherosa Ziehau bus_dmamem_free(ring->tag, *desc, ring->map); 1579ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->tag); 1580ae813fd8SSepherosa Ziehau ring->tag = NULL; 1581ae813fd8SSepherosa Ziehau return error; 1582ae813fd8SSepherosa Ziehau } 1583ae813fd8SSepherosa Ziehau 1584a455c52eSSepherosa Ziehau if (sc->sc_flags & NFE_JUMBO_SUP) { 1585ae813fd8SSepherosa Ziehau error = nfe_jpool_alloc(sc, ring); 1586ae813fd8SSepherosa Ziehau if (error) { 1587ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1588ae813fd8SSepherosa Ziehau "could not allocate jumbo frames\n"); 1589ae813fd8SSepherosa Ziehau return error; 1590ae813fd8SSepherosa Ziehau } 1591ae813fd8SSepherosa Ziehau } 1592ae813fd8SSepherosa Ziehau 1593ae813fd8SSepherosa Ziehau error = bus_dma_tag_create(NULL, 1, 0, 1594ae813fd8SSepherosa Ziehau BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, 1595ae813fd8SSepherosa Ziehau NULL, NULL, 1596ae813fd8SSepherosa Ziehau MCLBYTES, 1, MCLBYTES, 1597ae813fd8SSepherosa Ziehau 0, &ring->data_tag); 1598ae813fd8SSepherosa Ziehau if (error) { 1599ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1600ae813fd8SSepherosa Ziehau "could not create RX mbuf DMA tag\n"); 1601ae813fd8SSepherosa Ziehau return error; 1602ae813fd8SSepherosa Ziehau } 1603ae813fd8SSepherosa Ziehau 1604ae813fd8SSepherosa Ziehau /* Create a spare RX mbuf DMA map */ 1605ae813fd8SSepherosa Ziehau error = bus_dmamap_create(ring->data_tag, 0, &ring->data_tmpmap); 1606ae813fd8SSepherosa Ziehau if (error) { 1607ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1608ae813fd8SSepherosa Ziehau "could not create spare RX mbuf DMA map\n"); 1609ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->data_tag); 1610ae813fd8SSepherosa Ziehau ring->data_tag = NULL; 1611ae813fd8SSepherosa Ziehau return error; 1612ae813fd8SSepherosa Ziehau } 1613ae813fd8SSepherosa Ziehau 1614ec9403d0SSepherosa Ziehau for (i = 0; i < sc->sc_rx_ring_count; i++) { 1615ae813fd8SSepherosa Ziehau error = bus_dmamap_create(ring->data_tag, 0, 1616ae813fd8SSepherosa Ziehau &ring->data[i].map); 1617ae813fd8SSepherosa Ziehau if (error) { 1618ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1619ae813fd8SSepherosa Ziehau "could not create %dth RX mbuf DMA mapn", i); 1620ae813fd8SSepherosa Ziehau goto fail; 1621ae813fd8SSepherosa Ziehau } 1622ae813fd8SSepherosa Ziehau } 1623ae813fd8SSepherosa Ziehau return 0; 1624ae813fd8SSepherosa Ziehau fail: 1625ae813fd8SSepherosa Ziehau for (j = 0; j < i; ++j) 1626ae813fd8SSepherosa Ziehau bus_dmamap_destroy(ring->data_tag, ring->data[i].map); 1627ae813fd8SSepherosa Ziehau bus_dmamap_destroy(ring->data_tag, ring->data_tmpmap); 1628ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->data_tag); 1629ae813fd8SSepherosa Ziehau ring->data_tag = NULL; 1630ae813fd8SSepherosa Ziehau return error; 1631ae813fd8SSepherosa Ziehau } 1632ae813fd8SSepherosa Ziehau 1633ae813fd8SSepherosa Ziehau static void 1634ae813fd8SSepherosa Ziehau nfe_reset_rx_ring(struct nfe_softc *sc, struct nfe_rx_ring *ring) 1635ae813fd8SSepherosa Ziehau { 1636ae813fd8SSepherosa Ziehau int i; 1637ae813fd8SSepherosa Ziehau 1638ec9403d0SSepherosa Ziehau for (i = 0; i < sc->sc_rx_ring_count; i++) { 1639ae813fd8SSepherosa Ziehau struct nfe_rx_data *data = &ring->data[i]; 1640ae813fd8SSepherosa Ziehau 1641ae813fd8SSepherosa Ziehau if (data->m != NULL) { 1642a455c52eSSepherosa Ziehau if ((sc->sc_flags & NFE_USE_JUMBO) == 0) 1643ae813fd8SSepherosa Ziehau bus_dmamap_unload(ring->data_tag, data->map); 1644ae813fd8SSepherosa Ziehau m_freem(data->m); 1645ae813fd8SSepherosa Ziehau data->m = NULL; 1646ae813fd8SSepherosa Ziehau } 1647ae813fd8SSepherosa Ziehau } 1648ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->tag, ring->map, BUS_DMASYNC_PREWRITE); 1649ae813fd8SSepherosa Ziehau 1650ae813fd8SSepherosa Ziehau ring->cur = ring->next = 0; 1651ae813fd8SSepherosa Ziehau } 1652ae813fd8SSepherosa Ziehau 1653ae813fd8SSepherosa Ziehau static int 1654ae813fd8SSepherosa Ziehau nfe_init_rx_ring(struct nfe_softc *sc, struct nfe_rx_ring *ring) 1655ae813fd8SSepherosa Ziehau { 1656ae813fd8SSepherosa Ziehau int i; 1657ae813fd8SSepherosa Ziehau 1658ec9403d0SSepherosa Ziehau for (i = 0; i < sc->sc_rx_ring_count; ++i) { 1659ae813fd8SSepherosa Ziehau int error; 1660ae813fd8SSepherosa Ziehau 1661ae813fd8SSepherosa Ziehau /* XXX should use a function pointer */ 1662ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_USE_JUMBO) 1663ae813fd8SSepherosa Ziehau error = nfe_newbuf_jumbo(sc, ring, i, 1); 1664ae813fd8SSepherosa Ziehau else 1665ae813fd8SSepherosa Ziehau error = nfe_newbuf_std(sc, ring, i, 1); 1666ae813fd8SSepherosa Ziehau if (error) { 1667ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1668ae813fd8SSepherosa Ziehau "could not allocate RX buffer\n"); 1669ae813fd8SSepherosa Ziehau return error; 1670ae813fd8SSepherosa Ziehau } 1671ae813fd8SSepherosa Ziehau 1672ae813fd8SSepherosa Ziehau nfe_set_ready_rxdesc(sc, ring, i); 1673ae813fd8SSepherosa Ziehau } 1674ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->tag, ring->map, BUS_DMASYNC_PREWRITE); 1675ae813fd8SSepherosa Ziehau 1676ae813fd8SSepherosa Ziehau return 0; 1677ae813fd8SSepherosa Ziehau } 1678ae813fd8SSepherosa Ziehau 1679ae813fd8SSepherosa Ziehau static void 1680ae813fd8SSepherosa Ziehau nfe_free_rx_ring(struct nfe_softc *sc, struct nfe_rx_ring *ring) 1681ae813fd8SSepherosa Ziehau { 1682ae813fd8SSepherosa Ziehau if (ring->data_tag != NULL) { 1683ae813fd8SSepherosa Ziehau struct nfe_rx_data *data; 1684ae813fd8SSepherosa Ziehau int i; 1685ae813fd8SSepherosa Ziehau 1686ec9403d0SSepherosa Ziehau for (i = 0; i < sc->sc_rx_ring_count; i++) { 1687ae813fd8SSepherosa Ziehau data = &ring->data[i]; 1688ae813fd8SSepherosa Ziehau 1689ae813fd8SSepherosa Ziehau if (data->m != NULL) { 1690ae813fd8SSepherosa Ziehau bus_dmamap_unload(ring->data_tag, data->map); 1691ae813fd8SSepherosa Ziehau m_freem(data->m); 1692ae813fd8SSepherosa Ziehau } 1693ae813fd8SSepherosa Ziehau bus_dmamap_destroy(ring->data_tag, data->map); 1694ae813fd8SSepherosa Ziehau } 1695ae813fd8SSepherosa Ziehau bus_dmamap_destroy(ring->data_tag, ring->data_tmpmap); 1696ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->data_tag); 1697ae813fd8SSepherosa Ziehau } 1698ae813fd8SSepherosa Ziehau 1699ae813fd8SSepherosa Ziehau nfe_jpool_free(sc, ring); 1700ae813fd8SSepherosa Ziehau 1701a455c52eSSepherosa Ziehau if (ring->jbuf != NULL) 1702a455c52eSSepherosa Ziehau kfree(ring->jbuf, M_DEVBUF); 1703a455c52eSSepherosa Ziehau if (ring->data != NULL) 1704a455c52eSSepherosa Ziehau kfree(ring->data, M_DEVBUF); 1705a455c52eSSepherosa Ziehau 1706ae813fd8SSepherosa Ziehau if (ring->tag != NULL) { 1707ae813fd8SSepherosa Ziehau void *desc; 1708ae813fd8SSepherosa Ziehau 1709ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) 1710ae813fd8SSepherosa Ziehau desc = ring->desc64; 1711ae813fd8SSepherosa Ziehau else 1712ae813fd8SSepherosa Ziehau desc = ring->desc32; 1713ae813fd8SSepherosa Ziehau 1714ae813fd8SSepherosa Ziehau bus_dmamap_unload(ring->tag, ring->map); 1715ae813fd8SSepherosa Ziehau bus_dmamem_free(ring->tag, desc, ring->map); 1716ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->tag); 1717ae813fd8SSepherosa Ziehau } 1718ae813fd8SSepherosa Ziehau } 1719ae813fd8SSepherosa Ziehau 1720ae813fd8SSepherosa Ziehau static struct nfe_jbuf * 1721ae813fd8SSepherosa Ziehau nfe_jalloc(struct nfe_softc *sc) 1722ae813fd8SSepherosa Ziehau { 1723ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 1724ae813fd8SSepherosa Ziehau struct nfe_jbuf *jbuf; 1725ae813fd8SSepherosa Ziehau 1726ae813fd8SSepherosa Ziehau lwkt_serialize_enter(&sc->sc_jbuf_serializer); 1727ae813fd8SSepherosa Ziehau 1728ae813fd8SSepherosa Ziehau jbuf = SLIST_FIRST(&sc->rxq.jfreelist); 1729ae813fd8SSepherosa Ziehau if (jbuf != NULL) { 1730ae813fd8SSepherosa Ziehau SLIST_REMOVE_HEAD(&sc->rxq.jfreelist, jnext); 1731ae813fd8SSepherosa Ziehau jbuf->inuse = 1; 1732ae813fd8SSepherosa Ziehau } else { 1733ae813fd8SSepherosa Ziehau if_printf(ifp, "no free jumbo buffer\n"); 1734ae813fd8SSepherosa Ziehau } 1735ae813fd8SSepherosa Ziehau 1736ae813fd8SSepherosa Ziehau lwkt_serialize_exit(&sc->sc_jbuf_serializer); 1737ae813fd8SSepherosa Ziehau 1738ae813fd8SSepherosa Ziehau return jbuf; 1739ae813fd8SSepherosa Ziehau } 1740ae813fd8SSepherosa Ziehau 1741ae813fd8SSepherosa Ziehau static void 1742ae813fd8SSepherosa Ziehau nfe_jfree(void *arg) 1743ae813fd8SSepherosa Ziehau { 1744ae813fd8SSepherosa Ziehau struct nfe_jbuf *jbuf = arg; 1745ae813fd8SSepherosa Ziehau struct nfe_softc *sc = jbuf->sc; 1746ae813fd8SSepherosa Ziehau struct nfe_rx_ring *ring = jbuf->ring; 1747ae813fd8SSepherosa Ziehau 1748ae813fd8SSepherosa Ziehau if (&ring->jbuf[jbuf->slot] != jbuf) 1749ae813fd8SSepherosa Ziehau panic("%s: free wrong jumbo buffer\n", __func__); 1750ae813fd8SSepherosa Ziehau else if (jbuf->inuse == 0) 1751ae813fd8SSepherosa Ziehau panic("%s: jumbo buffer already freed\n", __func__); 1752ae813fd8SSepherosa Ziehau 1753ae813fd8SSepherosa Ziehau lwkt_serialize_enter(&sc->sc_jbuf_serializer); 1754ae813fd8SSepherosa Ziehau atomic_subtract_int(&jbuf->inuse, 1); 1755ae813fd8SSepherosa Ziehau if (jbuf->inuse == 0) 1756ae813fd8SSepherosa Ziehau SLIST_INSERT_HEAD(&ring->jfreelist, jbuf, jnext); 1757ae813fd8SSepherosa Ziehau lwkt_serialize_exit(&sc->sc_jbuf_serializer); 1758ae813fd8SSepherosa Ziehau } 1759ae813fd8SSepherosa Ziehau 1760ae813fd8SSepherosa Ziehau static void 1761ae813fd8SSepherosa Ziehau nfe_jref(void *arg) 1762ae813fd8SSepherosa Ziehau { 1763ae813fd8SSepherosa Ziehau struct nfe_jbuf *jbuf = arg; 1764ae813fd8SSepherosa Ziehau struct nfe_rx_ring *ring = jbuf->ring; 1765ae813fd8SSepherosa Ziehau 1766ae813fd8SSepherosa Ziehau if (&ring->jbuf[jbuf->slot] != jbuf) 1767ae813fd8SSepherosa Ziehau panic("%s: ref wrong jumbo buffer\n", __func__); 1768ae813fd8SSepherosa Ziehau else if (jbuf->inuse == 0) 1769ae813fd8SSepherosa Ziehau panic("%s: jumbo buffer already freed\n", __func__); 1770ae813fd8SSepherosa Ziehau 177106406609SSepherosa Ziehau atomic_add_int(&jbuf->inuse, 1); 1772ae813fd8SSepherosa Ziehau } 1773ae813fd8SSepherosa Ziehau 1774ae813fd8SSepherosa Ziehau static int 1775ae813fd8SSepherosa Ziehau nfe_jpool_alloc(struct nfe_softc *sc, struct nfe_rx_ring *ring) 1776ae813fd8SSepherosa Ziehau { 1777ae813fd8SSepherosa Ziehau struct nfe_jbuf *jbuf; 1778ae813fd8SSepherosa Ziehau bus_addr_t physaddr; 1779ae813fd8SSepherosa Ziehau caddr_t buf; 1780ae813fd8SSepherosa Ziehau int i, error; 1781ae813fd8SSepherosa Ziehau 1782ae813fd8SSepherosa Ziehau /* 1783ae813fd8SSepherosa Ziehau * Allocate a big chunk of DMA'able memory. 1784ae813fd8SSepherosa Ziehau */ 1785ae813fd8SSepherosa Ziehau error = bus_dma_tag_create(NULL, PAGE_SIZE, 0, 1786ae813fd8SSepherosa Ziehau BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, 1787ae813fd8SSepherosa Ziehau NULL, NULL, 1788ae813fd8SSepherosa Ziehau NFE_JPOOL_SIZE, 1, NFE_JPOOL_SIZE, 1789ae813fd8SSepherosa Ziehau 0, &ring->jtag); 1790ae813fd8SSepherosa Ziehau if (error) { 1791ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1792ae813fd8SSepherosa Ziehau "could not create jumbo DMA tag\n"); 1793ae813fd8SSepherosa Ziehau return error; 1794ae813fd8SSepherosa Ziehau } 1795ae813fd8SSepherosa Ziehau 1796ae813fd8SSepherosa Ziehau error = bus_dmamem_alloc(ring->jtag, (void **)&ring->jpool, 1797ae813fd8SSepherosa Ziehau BUS_DMA_WAITOK, &ring->jmap); 1798ae813fd8SSepherosa Ziehau if (error) { 1799ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1800ae813fd8SSepherosa Ziehau "could not allocate jumbo DMA memory\n"); 1801ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->jtag); 1802ae813fd8SSepherosa Ziehau ring->jtag = NULL; 1803ae813fd8SSepherosa Ziehau return error; 1804ae813fd8SSepherosa Ziehau } 1805ae813fd8SSepherosa Ziehau 1806ae813fd8SSepherosa Ziehau error = bus_dmamap_load(ring->jtag, ring->jmap, ring->jpool, 1807ae813fd8SSepherosa Ziehau NFE_JPOOL_SIZE, nfe_ring_dma_addr, &physaddr, 1808ae813fd8SSepherosa Ziehau BUS_DMA_WAITOK); 1809ae813fd8SSepherosa Ziehau if (error) { 1810ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1811ae813fd8SSepherosa Ziehau "could not load jumbo DMA map\n"); 1812ae813fd8SSepherosa Ziehau bus_dmamem_free(ring->jtag, ring->jpool, ring->jmap); 1813ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->jtag); 1814ae813fd8SSepherosa Ziehau ring->jtag = NULL; 1815ae813fd8SSepherosa Ziehau return error; 1816ae813fd8SSepherosa Ziehau } 1817ae813fd8SSepherosa Ziehau 1818ae813fd8SSepherosa Ziehau /* ..and split it into 9KB chunks */ 1819ae813fd8SSepherosa Ziehau SLIST_INIT(&ring->jfreelist); 1820ae813fd8SSepherosa Ziehau 1821ae813fd8SSepherosa Ziehau buf = ring->jpool; 1822ae813fd8SSepherosa Ziehau for (i = 0; i < NFE_JPOOL_COUNT; i++) { 1823ae813fd8SSepherosa Ziehau jbuf = &ring->jbuf[i]; 1824ae813fd8SSepherosa Ziehau 1825ae813fd8SSepherosa Ziehau jbuf->sc = sc; 1826ae813fd8SSepherosa Ziehau jbuf->ring = ring; 1827ae813fd8SSepherosa Ziehau jbuf->inuse = 0; 1828ae813fd8SSepherosa Ziehau jbuf->slot = i; 1829ae813fd8SSepherosa Ziehau jbuf->buf = buf; 1830ae813fd8SSepherosa Ziehau jbuf->physaddr = physaddr; 1831ae813fd8SSepherosa Ziehau 1832ae813fd8SSepherosa Ziehau SLIST_INSERT_HEAD(&ring->jfreelist, jbuf, jnext); 1833ae813fd8SSepherosa Ziehau 1834ae813fd8SSepherosa Ziehau buf += NFE_JBYTES; 1835ae813fd8SSepherosa Ziehau physaddr += NFE_JBYTES; 1836ae813fd8SSepherosa Ziehau } 1837ae813fd8SSepherosa Ziehau 1838ae813fd8SSepherosa Ziehau return 0; 1839ae813fd8SSepherosa Ziehau } 1840ae813fd8SSepherosa Ziehau 1841ae813fd8SSepherosa Ziehau static void 1842ae813fd8SSepherosa Ziehau nfe_jpool_free(struct nfe_softc *sc, struct nfe_rx_ring *ring) 1843ae813fd8SSepherosa Ziehau { 1844ae813fd8SSepherosa Ziehau if (ring->jtag != NULL) { 1845ae813fd8SSepherosa Ziehau bus_dmamap_unload(ring->jtag, ring->jmap); 1846ae813fd8SSepherosa Ziehau bus_dmamem_free(ring->jtag, ring->jpool, ring->jmap); 1847ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->jtag); 1848ae813fd8SSepherosa Ziehau } 1849ae813fd8SSepherosa Ziehau } 1850ae813fd8SSepherosa Ziehau 1851ae813fd8SSepherosa Ziehau static int 1852ae813fd8SSepherosa Ziehau nfe_alloc_tx_ring(struct nfe_softc *sc, struct nfe_tx_ring *ring) 1853ae813fd8SSepherosa Ziehau { 1854ae813fd8SSepherosa Ziehau int i, j, error, descsize; 1855ae813fd8SSepherosa Ziehau void **desc; 1856ae813fd8SSepherosa Ziehau 1857ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) { 1858ae813fd8SSepherosa Ziehau desc = (void **)&ring->desc64; 1859ae813fd8SSepherosa Ziehau descsize = sizeof(struct nfe_desc64); 1860ae813fd8SSepherosa Ziehau } else { 1861ae813fd8SSepherosa Ziehau desc = (void **)&ring->desc32; 1862ae813fd8SSepherosa Ziehau descsize = sizeof(struct nfe_desc32); 1863ae813fd8SSepherosa Ziehau } 1864ae813fd8SSepherosa Ziehau 1865ae813fd8SSepherosa Ziehau ring->queued = 0; 1866ae813fd8SSepherosa Ziehau ring->cur = ring->next = 0; 1867ae813fd8SSepherosa Ziehau 1868ae813fd8SSepherosa Ziehau error = bus_dma_tag_create(NULL, PAGE_SIZE, 0, 1869ae813fd8SSepherosa Ziehau BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, 1870ae813fd8SSepherosa Ziehau NULL, NULL, 1871ae813fd8SSepherosa Ziehau NFE_TX_RING_COUNT * descsize, 1, 1872ae813fd8SSepherosa Ziehau NFE_TX_RING_COUNT * descsize, 1873ae813fd8SSepherosa Ziehau 0, &ring->tag); 1874ae813fd8SSepherosa Ziehau if (error) { 1875ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1876ae813fd8SSepherosa Ziehau "could not create TX desc DMA map\n"); 1877ae813fd8SSepherosa Ziehau return error; 1878ae813fd8SSepherosa Ziehau } 1879ae813fd8SSepherosa Ziehau 1880ae813fd8SSepherosa Ziehau error = bus_dmamem_alloc(ring->tag, desc, BUS_DMA_WAITOK | BUS_DMA_ZERO, 1881ae813fd8SSepherosa Ziehau &ring->map); 1882ae813fd8SSepherosa Ziehau if (error) { 1883ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1884ae813fd8SSepherosa Ziehau "could not allocate TX desc DMA memory\n"); 1885ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->tag); 1886ae813fd8SSepherosa Ziehau ring->tag = NULL; 1887ae813fd8SSepherosa Ziehau return error; 1888ae813fd8SSepherosa Ziehau } 1889ae813fd8SSepherosa Ziehau 1890ae813fd8SSepherosa Ziehau error = bus_dmamap_load(ring->tag, ring->map, *desc, 1891ae813fd8SSepherosa Ziehau NFE_TX_RING_COUNT * descsize, 1892ae813fd8SSepherosa Ziehau nfe_ring_dma_addr, &ring->physaddr, 1893ae813fd8SSepherosa Ziehau BUS_DMA_WAITOK); 1894ae813fd8SSepherosa Ziehau if (error) { 1895ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1896ae813fd8SSepherosa Ziehau "could not load TX desc DMA map\n"); 1897ae813fd8SSepherosa Ziehau bus_dmamem_free(ring->tag, *desc, ring->map); 1898ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->tag); 1899ae813fd8SSepherosa Ziehau ring->tag = NULL; 1900ae813fd8SSepherosa Ziehau return error; 1901ae813fd8SSepherosa Ziehau } 1902ae813fd8SSepherosa Ziehau 1903ae813fd8SSepherosa Ziehau error = bus_dma_tag_create(NULL, PAGE_SIZE, 0, 1904ae813fd8SSepherosa Ziehau BUS_SPACE_MAXADDR_32BIT, BUS_SPACE_MAXADDR, 1905ae813fd8SSepherosa Ziehau NULL, NULL, 1906ae813fd8SSepherosa Ziehau NFE_JBYTES * NFE_MAX_SCATTER, 1907ae813fd8SSepherosa Ziehau NFE_MAX_SCATTER, NFE_JBYTES, 1908ae813fd8SSepherosa Ziehau 0, &ring->data_tag); 1909ae813fd8SSepherosa Ziehau if (error) { 1910ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1911ae813fd8SSepherosa Ziehau "could not create TX buf DMA tag\n"); 1912ae813fd8SSepherosa Ziehau return error; 1913ae813fd8SSepherosa Ziehau } 1914ae813fd8SSepherosa Ziehau 1915ae813fd8SSepherosa Ziehau for (i = 0; i < NFE_TX_RING_COUNT; i++) { 1916ae813fd8SSepherosa Ziehau error = bus_dmamap_create(ring->data_tag, 0, 1917ae813fd8SSepherosa Ziehau &ring->data[i].map); 1918ae813fd8SSepherosa Ziehau if (error) { 1919ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, 1920ae813fd8SSepherosa Ziehau "could not create %dth TX buf DMA map\n", i); 1921ae813fd8SSepherosa Ziehau goto fail; 1922ae813fd8SSepherosa Ziehau } 1923ae813fd8SSepherosa Ziehau } 1924ae813fd8SSepherosa Ziehau 1925ae813fd8SSepherosa Ziehau return 0; 1926ae813fd8SSepherosa Ziehau fail: 1927ae813fd8SSepherosa Ziehau for (j = 0; j < i; ++j) 1928ae813fd8SSepherosa Ziehau bus_dmamap_destroy(ring->data_tag, ring->data[i].map); 1929ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->data_tag); 1930ae813fd8SSepherosa Ziehau ring->data_tag = NULL; 1931ae813fd8SSepherosa Ziehau return error; 1932ae813fd8SSepherosa Ziehau } 1933ae813fd8SSepherosa Ziehau 1934ae813fd8SSepherosa Ziehau static void 1935ae813fd8SSepherosa Ziehau nfe_reset_tx_ring(struct nfe_softc *sc, struct nfe_tx_ring *ring) 1936ae813fd8SSepherosa Ziehau { 1937ae813fd8SSepherosa Ziehau int i; 1938ae813fd8SSepherosa Ziehau 1939ae813fd8SSepherosa Ziehau for (i = 0; i < NFE_TX_RING_COUNT; i++) { 1940ae813fd8SSepherosa Ziehau struct nfe_tx_data *data = &ring->data[i]; 1941ae813fd8SSepherosa Ziehau 1942ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) 1943ae813fd8SSepherosa Ziehau ring->desc64[i].flags = 0; 1944ae813fd8SSepherosa Ziehau else 1945ae813fd8SSepherosa Ziehau ring->desc32[i].flags = 0; 1946ae813fd8SSepherosa Ziehau 1947ae813fd8SSepherosa Ziehau if (data->m != NULL) { 1948ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->data_tag, data->map, 1949ae813fd8SSepherosa Ziehau BUS_DMASYNC_POSTWRITE); 1950ae813fd8SSepherosa Ziehau bus_dmamap_unload(ring->data_tag, data->map); 1951ae813fd8SSepherosa Ziehau m_freem(data->m); 1952ae813fd8SSepherosa Ziehau data->m = NULL; 1953ae813fd8SSepherosa Ziehau } 1954ae813fd8SSepherosa Ziehau } 1955ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->tag, ring->map, BUS_DMASYNC_PREWRITE); 1956ae813fd8SSepherosa Ziehau 1957ae813fd8SSepherosa Ziehau ring->queued = 0; 1958ae813fd8SSepherosa Ziehau ring->cur = ring->next = 0; 1959ae813fd8SSepherosa Ziehau } 1960ae813fd8SSepherosa Ziehau 1961ae813fd8SSepherosa Ziehau static int 1962ae813fd8SSepherosa Ziehau nfe_init_tx_ring(struct nfe_softc *sc __unused, 1963ae813fd8SSepherosa Ziehau struct nfe_tx_ring *ring __unused) 1964ae813fd8SSepherosa Ziehau { 1965ae813fd8SSepherosa Ziehau return 0; 1966ae813fd8SSepherosa Ziehau } 1967ae813fd8SSepherosa Ziehau 1968ae813fd8SSepherosa Ziehau static void 1969ae813fd8SSepherosa Ziehau nfe_free_tx_ring(struct nfe_softc *sc, struct nfe_tx_ring *ring) 1970ae813fd8SSepherosa Ziehau { 1971ae813fd8SSepherosa Ziehau if (ring->data_tag != NULL) { 1972ae813fd8SSepherosa Ziehau struct nfe_tx_data *data; 1973ae813fd8SSepherosa Ziehau int i; 1974ae813fd8SSepherosa Ziehau 1975ae813fd8SSepherosa Ziehau for (i = 0; i < NFE_TX_RING_COUNT; ++i) { 1976ae813fd8SSepherosa Ziehau data = &ring->data[i]; 1977ae813fd8SSepherosa Ziehau 1978ae813fd8SSepherosa Ziehau if (data->m != NULL) { 1979ae813fd8SSepherosa Ziehau bus_dmamap_unload(ring->data_tag, data->map); 1980ae813fd8SSepherosa Ziehau m_freem(data->m); 1981ae813fd8SSepherosa Ziehau } 1982ae813fd8SSepherosa Ziehau bus_dmamap_destroy(ring->data_tag, data->map); 1983ae813fd8SSepherosa Ziehau } 1984ae813fd8SSepherosa Ziehau 1985ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->data_tag); 1986ae813fd8SSepherosa Ziehau } 1987ae813fd8SSepherosa Ziehau 1988ae813fd8SSepherosa Ziehau if (ring->tag != NULL) { 1989ae813fd8SSepherosa Ziehau void *desc; 1990ae813fd8SSepherosa Ziehau 1991ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) 1992ae813fd8SSepherosa Ziehau desc = ring->desc64; 1993ae813fd8SSepherosa Ziehau else 1994ae813fd8SSepherosa Ziehau desc = ring->desc32; 1995ae813fd8SSepherosa Ziehau 1996ae813fd8SSepherosa Ziehau bus_dmamap_unload(ring->tag, ring->map); 1997ae813fd8SSepherosa Ziehau bus_dmamem_free(ring->tag, desc, ring->map); 1998ae813fd8SSepherosa Ziehau bus_dma_tag_destroy(ring->tag); 1999ae813fd8SSepherosa Ziehau } 2000ae813fd8SSepherosa Ziehau } 2001ae813fd8SSepherosa Ziehau 2002ae813fd8SSepherosa Ziehau static int 2003ae813fd8SSepherosa Ziehau nfe_ifmedia_upd(struct ifnet *ifp) 2004ae813fd8SSepherosa Ziehau { 2005ae813fd8SSepherosa Ziehau struct nfe_softc *sc = ifp->if_softc; 2006ae813fd8SSepherosa Ziehau struct mii_data *mii = device_get_softc(sc->sc_miibus); 2007ae813fd8SSepherosa Ziehau 2008ae813fd8SSepherosa Ziehau if (mii->mii_instance != 0) { 2009ae813fd8SSepherosa Ziehau struct mii_softc *miisc; 2010ae813fd8SSepherosa Ziehau 2011ae813fd8SSepherosa Ziehau LIST_FOREACH(miisc, &mii->mii_phys, mii_list) 2012ae813fd8SSepherosa Ziehau mii_phy_reset(miisc); 2013ae813fd8SSepherosa Ziehau } 2014ae813fd8SSepherosa Ziehau mii_mediachg(mii); 2015ae813fd8SSepherosa Ziehau 2016ae813fd8SSepherosa Ziehau return 0; 2017ae813fd8SSepherosa Ziehau } 2018ae813fd8SSepherosa Ziehau 2019ae813fd8SSepherosa Ziehau static void 2020ae813fd8SSepherosa Ziehau nfe_ifmedia_sts(struct ifnet *ifp, struct ifmediareq *ifmr) 2021ae813fd8SSepherosa Ziehau { 2022ae813fd8SSepherosa Ziehau struct nfe_softc *sc = ifp->if_softc; 2023ae813fd8SSepherosa Ziehau struct mii_data *mii = device_get_softc(sc->sc_miibus); 2024ae813fd8SSepherosa Ziehau 2025ae813fd8SSepherosa Ziehau mii_pollstat(mii); 2026ae813fd8SSepherosa Ziehau ifmr->ifm_status = mii->mii_media_status; 2027ae813fd8SSepherosa Ziehau ifmr->ifm_active = mii->mii_media_active; 2028ae813fd8SSepherosa Ziehau } 2029ae813fd8SSepherosa Ziehau 2030ae813fd8SSepherosa Ziehau static void 2031ae813fd8SSepherosa Ziehau nfe_setmulti(struct nfe_softc *sc) 2032ae813fd8SSepherosa Ziehau { 2033ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 2034ae813fd8SSepherosa Ziehau struct ifmultiaddr *ifma; 2035ae813fd8SSepherosa Ziehau uint8_t addr[ETHER_ADDR_LEN], mask[ETHER_ADDR_LEN]; 2036ae813fd8SSepherosa Ziehau uint32_t filter = NFE_RXFILTER_MAGIC; 2037ae813fd8SSepherosa Ziehau int i; 2038ae813fd8SSepherosa Ziehau 2039ae813fd8SSepherosa Ziehau if ((ifp->if_flags & (IFF_ALLMULTI | IFF_PROMISC)) != 0) { 2040ae813fd8SSepherosa Ziehau bzero(addr, ETHER_ADDR_LEN); 2041ae813fd8SSepherosa Ziehau bzero(mask, ETHER_ADDR_LEN); 2042ae813fd8SSepherosa Ziehau goto done; 2043ae813fd8SSepherosa Ziehau } 2044ae813fd8SSepherosa Ziehau 2045ae813fd8SSepherosa Ziehau bcopy(etherbroadcastaddr, addr, ETHER_ADDR_LEN); 2046ae813fd8SSepherosa Ziehau bcopy(etherbroadcastaddr, mask, ETHER_ADDR_LEN); 2047ae813fd8SSepherosa Ziehau 2048ae813fd8SSepherosa Ziehau LIST_FOREACH(ifma, &ifp->if_multiaddrs, ifma_link) { 2049ae813fd8SSepherosa Ziehau caddr_t maddr; 2050ae813fd8SSepherosa Ziehau 2051ae813fd8SSepherosa Ziehau if (ifma->ifma_addr->sa_family != AF_LINK) 2052ae813fd8SSepherosa Ziehau continue; 2053ae813fd8SSepherosa Ziehau 2054ae813fd8SSepherosa Ziehau maddr = LLADDR((struct sockaddr_dl *)ifma->ifma_addr); 2055ae813fd8SSepherosa Ziehau for (i = 0; i < ETHER_ADDR_LEN; i++) { 2056ae813fd8SSepherosa Ziehau addr[i] &= maddr[i]; 2057ae813fd8SSepherosa Ziehau mask[i] &= ~maddr[i]; 2058ae813fd8SSepherosa Ziehau } 2059ae813fd8SSepherosa Ziehau } 2060ae813fd8SSepherosa Ziehau 2061ae813fd8SSepherosa Ziehau for (i = 0; i < ETHER_ADDR_LEN; i++) 2062ae813fd8SSepherosa Ziehau mask[i] |= addr[i]; 2063ae813fd8SSepherosa Ziehau 2064ae813fd8SSepherosa Ziehau done: 2065ae813fd8SSepherosa Ziehau addr[0] |= 0x01; /* make sure multicast bit is set */ 2066ae813fd8SSepherosa Ziehau 2067ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_MULTIADDR_HI, 2068ae813fd8SSepherosa Ziehau addr[3] << 24 | addr[2] << 16 | addr[1] << 8 | addr[0]); 2069ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_MULTIADDR_LO, 2070ae813fd8SSepherosa Ziehau addr[5] << 8 | addr[4]); 2071ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_MULTIMASK_HI, 2072ae813fd8SSepherosa Ziehau mask[3] << 24 | mask[2] << 16 | mask[1] << 8 | mask[0]); 2073ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_MULTIMASK_LO, 2074ae813fd8SSepherosa Ziehau mask[5] << 8 | mask[4]); 2075ae813fd8SSepherosa Ziehau 2076ae813fd8SSepherosa Ziehau filter |= (ifp->if_flags & IFF_PROMISC) ? NFE_PROMISC : NFE_U2M; 2077ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_RXFILTER, filter); 2078ae813fd8SSepherosa Ziehau } 2079ae813fd8SSepherosa Ziehau 2080ae813fd8SSepherosa Ziehau static void 2081ae813fd8SSepherosa Ziehau nfe_get_macaddr(struct nfe_softc *sc, uint8_t *addr) 2082ae813fd8SSepherosa Ziehau { 2083ae813fd8SSepherosa Ziehau uint32_t tmp; 2084ae813fd8SSepherosa Ziehau 2085ae813fd8SSepherosa Ziehau tmp = NFE_READ(sc, NFE_MACADDR_LO); 2086ae813fd8SSepherosa Ziehau addr[0] = (tmp >> 8) & 0xff; 2087ae813fd8SSepherosa Ziehau addr[1] = (tmp & 0xff); 2088ae813fd8SSepherosa Ziehau 2089ae813fd8SSepherosa Ziehau tmp = NFE_READ(sc, NFE_MACADDR_HI); 2090ae813fd8SSepherosa Ziehau addr[2] = (tmp >> 24) & 0xff; 2091ae813fd8SSepherosa Ziehau addr[3] = (tmp >> 16) & 0xff; 2092ae813fd8SSepherosa Ziehau addr[4] = (tmp >> 8) & 0xff; 2093ae813fd8SSepherosa Ziehau addr[5] = (tmp & 0xff); 2094ae813fd8SSepherosa Ziehau } 2095ae813fd8SSepherosa Ziehau 2096ae813fd8SSepherosa Ziehau static void 2097ae813fd8SSepherosa Ziehau nfe_set_macaddr(struct nfe_softc *sc, const uint8_t *addr) 2098ae813fd8SSepherosa Ziehau { 2099ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_MACADDR_LO, 2100ae813fd8SSepherosa Ziehau addr[5] << 8 | addr[4]); 2101ae813fd8SSepherosa Ziehau NFE_WRITE(sc, NFE_MACADDR_HI, 2102ae813fd8SSepherosa Ziehau addr[3] << 24 | addr[2] << 16 | addr[1] << 8 | addr[0]); 2103ae813fd8SSepherosa Ziehau } 2104ae813fd8SSepherosa Ziehau 2105ae813fd8SSepherosa Ziehau static void 2106ae813fd8SSepherosa Ziehau nfe_tick(void *arg) 2107ae813fd8SSepherosa Ziehau { 2108ae813fd8SSepherosa Ziehau struct nfe_softc *sc = arg; 2109ae813fd8SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 2110ae813fd8SSepherosa Ziehau struct mii_data *mii = device_get_softc(sc->sc_miibus); 2111ae813fd8SSepherosa Ziehau 2112ae813fd8SSepherosa Ziehau lwkt_serialize_enter(ifp->if_serializer); 2113ae813fd8SSepherosa Ziehau 2114ae813fd8SSepherosa Ziehau mii_tick(mii); 2115ae813fd8SSepherosa Ziehau callout_reset(&sc->sc_tick_ch, hz, nfe_tick, sc); 2116ae813fd8SSepherosa Ziehau 2117ae813fd8SSepherosa Ziehau lwkt_serialize_exit(ifp->if_serializer); 2118ae813fd8SSepherosa Ziehau } 2119ae813fd8SSepherosa Ziehau 2120ae813fd8SSepherosa Ziehau static void 2121ae813fd8SSepherosa Ziehau nfe_ring_dma_addr(void *arg, bus_dma_segment_t *seg, int nseg, int error) 2122ae813fd8SSepherosa Ziehau { 2123ae813fd8SSepherosa Ziehau if (error) 2124ae813fd8SSepherosa Ziehau return; 2125ae813fd8SSepherosa Ziehau 2126ae813fd8SSepherosa Ziehau KASSERT(nseg == 1, ("too many segments, should be 1\n")); 2127ae813fd8SSepherosa Ziehau 2128ae813fd8SSepherosa Ziehau *((uint32_t *)arg) = seg->ds_addr; 2129ae813fd8SSepherosa Ziehau } 2130ae813fd8SSepherosa Ziehau 2131ae813fd8SSepherosa Ziehau static void 2132ae813fd8SSepherosa Ziehau nfe_buf_dma_addr(void *arg, bus_dma_segment_t *segs, int nsegs, 2133ae813fd8SSepherosa Ziehau bus_size_t mapsz __unused, int error) 2134ae813fd8SSepherosa Ziehau { 2135ae813fd8SSepherosa Ziehau struct nfe_dma_ctx *ctx = arg; 2136ae813fd8SSepherosa Ziehau int i; 2137ae813fd8SSepherosa Ziehau 2138ae813fd8SSepherosa Ziehau if (error) 2139ae813fd8SSepherosa Ziehau return; 2140ae813fd8SSepherosa Ziehau 2141ae813fd8SSepherosa Ziehau KASSERT(nsegs <= ctx->nsegs, 2142ae813fd8SSepherosa Ziehau ("too many segments(%d), should be <= %d\n", 2143ae813fd8SSepherosa Ziehau nsegs, ctx->nsegs)); 2144ae813fd8SSepherosa Ziehau 2145ae813fd8SSepherosa Ziehau ctx->nsegs = nsegs; 2146ae813fd8SSepherosa Ziehau for (i = 0; i < nsegs; ++i) 2147ae813fd8SSepherosa Ziehau ctx->segs[i] = segs[i]; 2148ae813fd8SSepherosa Ziehau } 2149ae813fd8SSepherosa Ziehau 2150ae813fd8SSepherosa Ziehau static int 2151ae813fd8SSepherosa Ziehau nfe_newbuf_std(struct nfe_softc *sc, struct nfe_rx_ring *ring, int idx, 2152ae813fd8SSepherosa Ziehau int wait) 2153ae813fd8SSepherosa Ziehau { 2154ae813fd8SSepherosa Ziehau struct nfe_rx_data *data = &ring->data[idx]; 2155ae813fd8SSepherosa Ziehau struct nfe_dma_ctx ctx; 2156ae813fd8SSepherosa Ziehau bus_dma_segment_t seg; 2157ae813fd8SSepherosa Ziehau bus_dmamap_t map; 2158ae813fd8SSepherosa Ziehau struct mbuf *m; 2159ae813fd8SSepherosa Ziehau int error; 2160ae813fd8SSepherosa Ziehau 2161ae813fd8SSepherosa Ziehau m = m_getcl(wait ? MB_WAIT : MB_DONTWAIT, MT_DATA, M_PKTHDR); 2162ae813fd8SSepherosa Ziehau if (m == NULL) 2163ae813fd8SSepherosa Ziehau return ENOBUFS; 2164ae813fd8SSepherosa Ziehau m->m_len = m->m_pkthdr.len = MCLBYTES; 2165ae813fd8SSepherosa Ziehau 2166ae813fd8SSepherosa Ziehau ctx.nsegs = 1; 2167ae813fd8SSepherosa Ziehau ctx.segs = &seg; 2168ae813fd8SSepherosa Ziehau error = bus_dmamap_load_mbuf(ring->data_tag, ring->data_tmpmap, 2169ae813fd8SSepherosa Ziehau m, nfe_buf_dma_addr, &ctx, 2170ae813fd8SSepherosa Ziehau wait ? BUS_DMA_WAITOK : BUS_DMA_NOWAIT); 2171ae813fd8SSepherosa Ziehau if (error) { 2172ae813fd8SSepherosa Ziehau m_freem(m); 2173ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, "could map RX mbuf %d\n", error); 2174ae813fd8SSepherosa Ziehau return error; 2175ae813fd8SSepherosa Ziehau } 2176ae813fd8SSepherosa Ziehau 2177ae813fd8SSepherosa Ziehau /* Unload originally mapped mbuf */ 2178ae813fd8SSepherosa Ziehau bus_dmamap_unload(ring->data_tag, data->map); 2179ae813fd8SSepherosa Ziehau 2180ae813fd8SSepherosa Ziehau /* Swap this DMA map with tmp DMA map */ 2181ae813fd8SSepherosa Ziehau map = data->map; 2182ae813fd8SSepherosa Ziehau data->map = ring->data_tmpmap; 2183ae813fd8SSepherosa Ziehau ring->data_tmpmap = map; 2184ae813fd8SSepherosa Ziehau 2185ae813fd8SSepherosa Ziehau /* Caller is assumed to have collected the old mbuf */ 2186ae813fd8SSepherosa Ziehau data->m = m; 2187ae813fd8SSepherosa Ziehau 2188ae813fd8SSepherosa Ziehau nfe_set_paddr_rxdesc(sc, ring, idx, seg.ds_addr); 2189ae813fd8SSepherosa Ziehau 2190ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->data_tag, data->map, BUS_DMASYNC_PREREAD); 2191ae813fd8SSepherosa Ziehau return 0; 2192ae813fd8SSepherosa Ziehau } 2193ae813fd8SSepherosa Ziehau 2194ae813fd8SSepherosa Ziehau static int 2195ae813fd8SSepherosa Ziehau nfe_newbuf_jumbo(struct nfe_softc *sc, struct nfe_rx_ring *ring, int idx, 2196ae813fd8SSepherosa Ziehau int wait) 2197ae813fd8SSepherosa Ziehau { 2198ae813fd8SSepherosa Ziehau struct nfe_rx_data *data = &ring->data[idx]; 2199ae813fd8SSepherosa Ziehau struct nfe_jbuf *jbuf; 2200ae813fd8SSepherosa Ziehau struct mbuf *m; 2201ae813fd8SSepherosa Ziehau 2202ae813fd8SSepherosa Ziehau MGETHDR(m, wait ? MB_WAIT : MB_DONTWAIT, MT_DATA); 2203ae813fd8SSepherosa Ziehau if (m == NULL) 2204ae813fd8SSepherosa Ziehau return ENOBUFS; 2205ae813fd8SSepherosa Ziehau 2206ae813fd8SSepherosa Ziehau jbuf = nfe_jalloc(sc); 2207ae813fd8SSepherosa Ziehau if (jbuf == NULL) { 2208ae813fd8SSepherosa Ziehau m_freem(m); 2209ae813fd8SSepherosa Ziehau if_printf(&sc->arpcom.ac_if, "jumbo allocation failed " 2210ae813fd8SSepherosa Ziehau "-- packet dropped!\n"); 2211ae813fd8SSepherosa Ziehau return ENOBUFS; 2212ae813fd8SSepherosa Ziehau } 2213ae813fd8SSepherosa Ziehau 2214ae813fd8SSepherosa Ziehau m->m_ext.ext_arg = jbuf; 2215ae813fd8SSepherosa Ziehau m->m_ext.ext_buf = jbuf->buf; 2216ae813fd8SSepherosa Ziehau m->m_ext.ext_free = nfe_jfree; 2217ae813fd8SSepherosa Ziehau m->m_ext.ext_ref = nfe_jref; 2218ae813fd8SSepherosa Ziehau m->m_ext.ext_size = NFE_JBYTES; 2219ae813fd8SSepherosa Ziehau 2220ae813fd8SSepherosa Ziehau m->m_data = m->m_ext.ext_buf; 2221ae813fd8SSepherosa Ziehau m->m_flags |= M_EXT; 2222ae813fd8SSepherosa Ziehau m->m_len = m->m_pkthdr.len = m->m_ext.ext_size; 2223ae813fd8SSepherosa Ziehau 2224ae813fd8SSepherosa Ziehau /* Caller is assumed to have collected the old mbuf */ 2225ae813fd8SSepherosa Ziehau data->m = m; 2226ae813fd8SSepherosa Ziehau 2227ae813fd8SSepherosa Ziehau nfe_set_paddr_rxdesc(sc, ring, idx, jbuf->physaddr); 2228ae813fd8SSepherosa Ziehau 2229ae813fd8SSepherosa Ziehau bus_dmamap_sync(ring->jtag, ring->jmap, BUS_DMASYNC_PREREAD); 2230ae813fd8SSepherosa Ziehau return 0; 2231ae813fd8SSepherosa Ziehau } 2232ae813fd8SSepherosa Ziehau 2233ae813fd8SSepherosa Ziehau static void 2234ae813fd8SSepherosa Ziehau nfe_set_paddr_rxdesc(struct nfe_softc *sc, struct nfe_rx_ring *ring, int idx, 2235ae813fd8SSepherosa Ziehau bus_addr_t physaddr) 2236ae813fd8SSepherosa Ziehau { 2237ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) { 2238ae813fd8SSepherosa Ziehau struct nfe_desc64 *desc64 = &ring->desc64[idx]; 2239ae813fd8SSepherosa Ziehau 2240ae813fd8SSepherosa Ziehau #if defined(__LP64__) 2241ae813fd8SSepherosa Ziehau desc64->physaddr[0] = htole32(physaddr >> 32); 2242ae813fd8SSepherosa Ziehau #endif 2243ae813fd8SSepherosa Ziehau desc64->physaddr[1] = htole32(physaddr & 0xffffffff); 2244ae813fd8SSepherosa Ziehau } else { 2245ae813fd8SSepherosa Ziehau struct nfe_desc32 *desc32 = &ring->desc32[idx]; 2246ae813fd8SSepherosa Ziehau 2247ae813fd8SSepherosa Ziehau desc32->physaddr = htole32(physaddr); 2248ae813fd8SSepherosa Ziehau } 2249ae813fd8SSepherosa Ziehau } 2250ae813fd8SSepherosa Ziehau 2251ae813fd8SSepherosa Ziehau static void 2252ae813fd8SSepherosa Ziehau nfe_set_ready_rxdesc(struct nfe_softc *sc, struct nfe_rx_ring *ring, int idx) 2253ae813fd8SSepherosa Ziehau { 2254ae813fd8SSepherosa Ziehau if (sc->sc_flags & NFE_40BIT_ADDR) { 2255ae813fd8SSepherosa Ziehau struct nfe_desc64 *desc64 = &ring->desc64[idx]; 2256ae813fd8SSepherosa Ziehau 2257ae813fd8SSepherosa Ziehau desc64->length = htole16(ring->bufsz); 2258ae813fd8SSepherosa Ziehau desc64->flags = htole16(NFE_RX_READY); 2259ae813fd8SSepherosa Ziehau } else { 2260ae813fd8SSepherosa Ziehau struct nfe_desc32 *desc32 = &ring->desc32[idx]; 2261ae813fd8SSepherosa Ziehau 2262ae813fd8SSepherosa Ziehau desc32->length = htole16(ring->bufsz); 2263ae813fd8SSepherosa Ziehau desc32->flags = htole16(NFE_RX_READY); 2264ae813fd8SSepherosa Ziehau } 2265ae813fd8SSepherosa Ziehau } 2266ec9403d0SSepherosa Ziehau 2267ec9403d0SSepherosa Ziehau static int 2268ec9403d0SSepherosa Ziehau nfe_sysctl_imtime(SYSCTL_HANDLER_ARGS) 2269ec9403d0SSepherosa Ziehau { 2270ec9403d0SSepherosa Ziehau struct nfe_softc *sc = arg1; 2271ec9403d0SSepherosa Ziehau struct ifnet *ifp = &sc->arpcom.ac_if; 2272ec9403d0SSepherosa Ziehau int error, v; 2273ec9403d0SSepherosa Ziehau 2274ec9403d0SSepherosa Ziehau lwkt_serialize_enter(ifp->if_serializer); 2275ec9403d0SSepherosa Ziehau 2276ec9403d0SSepherosa Ziehau v = sc->sc_imtime; 2277ec9403d0SSepherosa Ziehau error = sysctl_handle_int(oidp, &v, 0, req); 2278ec9403d0SSepherosa Ziehau if (error || req->newptr == NULL) 2279ec9403d0SSepherosa Ziehau goto back; 2280ec9403d0SSepherosa Ziehau if (v == 0) { 2281ec9403d0SSepherosa Ziehau error = EINVAL; 2282ec9403d0SSepherosa Ziehau goto back; 2283ec9403d0SSepherosa Ziehau } 2284ec9403d0SSepherosa Ziehau 2285ec9403d0SSepherosa Ziehau if (sc->sc_imtime != v) { 2286ec9403d0SSepherosa Ziehau int old_imtime = sc->sc_imtime; 2287ec9403d0SSepherosa Ziehau 2288ec9403d0SSepherosa Ziehau sc->sc_imtime = v; 2289ec9403d0SSepherosa Ziehau sc->sc_irq_enable = NFE_IRQ_ENABLE(sc); 2290ec9403d0SSepherosa Ziehau 2291ec9403d0SSepherosa Ziehau if ((ifp->if_flags & (IFF_POLLING | IFF_RUNNING)) 2292ec9403d0SSepherosa Ziehau == IFF_RUNNING) { 2293ec9403d0SSepherosa Ziehau if (old_imtime > 0 && sc->sc_imtime > 0) { 2294ec9403d0SSepherosa Ziehau NFE_WRITE(sc, NFE_IMTIMER, 2295ec9403d0SSepherosa Ziehau NFE_IMTIME(sc->sc_imtime)); 2296ec9403d0SSepherosa Ziehau } else if ((old_imtime * sc->sc_imtime) < 0) { 2297ec9403d0SSepherosa Ziehau ifp->if_init(sc); 2298ec9403d0SSepherosa Ziehau } 2299ec9403d0SSepherosa Ziehau } 2300ec9403d0SSepherosa Ziehau } 2301ec9403d0SSepherosa Ziehau back: 2302ec9403d0SSepherosa Ziehau lwkt_serialize_exit(ifp->if_serializer); 2303ec9403d0SSepherosa Ziehau return error; 2304ec9403d0SSepherosa Ziehau } 2305